RNA Motifs and Regulatory Elements
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[1] Matthew O. Ward,et al. Visualizing relationships between nucleic acid sequences using correlation images , 1993, Comput. Appl. Biosci..
[2] W. Scott,et al. The Structural Basis of Hammerhead Ribozyme Self-Cleavage , 1998, Cell.
[3] I. Brierley,et al. Secondary structure and mutational analysis of the ribosomal frameshift signal of rous sarcoma virus , 1998, Journal of Molecular Biology.
[4] M. Hentze,et al. Influence of altered transcription on the translational control of human ferritin expression. , 1987, Proceedings of the National Academy of Sciences of the United States of America.
[5] T. Nilsen. Unusual strategies of gene expression and control in parasites. , 1994, Science.
[6] R. Fettiplace,et al. The Functional Role of Alternative Splicing of Ca2+‐Activated K+ Channels in Auditory Hair Cells , 1999, Annals of the New York Academy of Sciences.
[7] Y. Kuchino,et al. Nonsense suppression in mammalian cells. , 1996, Biochimie.
[8] J. Taylor,et al. A specific base transition occurs on replicating hepatitis delta virus RNA , 1990, Journal of virology.
[9] M. Ohno. [Nuclear export of proteins and RNAs]. , 1999, Tanpakushitsu kakusan koso. Protein, nucleic acid, enzyme.
[10] A. Jacquier,et al. Self-splicing group II and nuclear pre-mRNA introns: how similar are they? , 1990, Trends in biochemical sciences.
[11] C. Hellen,et al. Physical Association of Eukaryotic Initiation Factor 4G (eIF4G) with eIF4A Strongly Enhances Binding of eIF4G to the Internal Ribosomal Entry Site of Encephalomyocarditis Virus and Is Required for Internal Initiation of Translation , 2000, Molecular and Cellular Biology.
[12] R. Jaenisch,et al. A 450 kb Transgene Displays Properties of the Mammalian X-Inactivation Center , 1996, Cell.
[13] J. Richter. Translational control during early development , 1991, Critical reviews in eukaryotic gene expression.
[14] M. Hentze,et al. Translational regulation by mRNA/protein interactions in eukaryotic cells: Ferritin and beyond , 1993, BioEssays : news and reviews in molecular, cellular and developmental biology.
[15] L. Pellizzoni,et al. Cellular nucleic acid binding protein binds a conserved region of the 5' UTR of Xenopus laevis ribosomal protein mRNAs. , 1997, Journal of molecular biology.
[16] H. Himeno,et al. The anticodon loop is a major identity determinant of Saccharomyces cerevisiae tRNA(Leu). , 1996, Journal of molecular biology.
[17] Stephen M. Mount,et al. Are snRNPs involved in splicing? , 1980, Nature.
[18] G. Karpen,et al. A Drosophila rRNA gene located in euchromatin is active in transcription and nucleolus formation. , 1988, Genes & development.
[19] Kathryn F. Beal,et al. The Staden package, 1998. , 2000, Methods in molecular biology.
[20] Wolfram Saenger,et al. Principles of Nucleic Acid Structure , 1983 .
[21] V. Ambros,et al. The C. elegans heterochronic gene lin-4 encodes small RNAs with antisense complementarity to lin-14 , 1993, Cell.
[22] D. Tollervey,et al. The small nucleolar RNP protein NOP1 (fibrillarin) is required for pre‐rRNA processing in yeast. , 1991, The EMBO journal.
[23] J. Jung,et al. Utilization of selenocysteyl-tRNA[Ser]Sec and seryl-tRNA[Ser]Sec in protein synthesis. , 1994, The Journal of biological chemistry.
[24] L. Simpson,et al. Sense from nonsense: RNA editing in mitochondria of kinetoplastid protozoa and slime molds , 1995, Cell.
[25] D. Bartel,et al. One sequence, two ribozymes: implications for the emergence of new ribozyme folds. , 2000, Science.
[26] August Böck,et al. RNA Structures Involved in Selenoprotein Synthesis , 1998 .
[27] W. Hauswirth,et al. Ribozyme gene therapy: applications for molecular medicine. , 2001, Trends in molecular medicine.
[28] T. Gibson,et al. Three-Dimensional Structure and Stability of the KH Domain: Molecular Insights into the Fragile X Syndrome , 1996, Cell.
[29] S. Lommel,et al. RNA-mediated trans-activation of transcription from a viral RNA. , 1998, Science.
[30] M. Fedor,et al. The internal equilibrium of the hairpin ribozyme: temperature, ion and pH effects. , 1999, Journal of molecular biology.
[31] W. Keller,et al. No end yet to messenger RNA 3′ processing! , 1995, Cell.
[32] H. Weber,et al. A branched stem-loop structure in the M-site of bacteriophage Qbeta RNA is important for template recognition by Qbeta replicase holoenzyme. , 1998, Journal of molecular biology.
[33] X Chromosome Dosage Compensation in Drosophila , 1996, Science.
[34] P. Laird. Trans splicing in trypanosomes — archaism or adaptation? , 1989, Trends in Genetics.
[35] S. Sukumar,et al. RNA editing in the Wilms' tumor susceptibility gene, WT1. , 1994, Genes & development.
[36] N. Brockdorff,et al. Developmentally Regulated Xist Promoter Switch Mediates Initiation of X Inactivation , 1998, Cell.
[37] D. Hockenbery. bcl‐2, a novel reguator of cell death , 1995, BioEssays : news and reviews in molecular, cellular and developmental biology.
[38] E. Wimmer,et al. A conserved AUG triplet in the 5' nontranslated region of poliovirus can function as an initiation codon in vitro and in vivo. , 1994, Virology.
[39] E. B. Goodwin,et al. Conservation of the C.elegans tra‐2 3′UTR translational control , 1997, The EMBO journal.
[40] J. Monod,et al. Genetic regulatory mechanisms in the synthesis of proteins. , 1961, Journal of Molecular Biology.
[41] Tan Inoue,et al. Minimal catalytic domain of a group I self-splicing intron RNA , 2000, Nature Structural Biology.
[42] R. Waring,et al. The maturase encoded by a group I intron from Aspergillus nidulans stabilizes RNA tertiary structure and promotes rapid splicing. , 1999, Journal of molecular biology.
[43] G. Ruvkun,et al. Posttranscriptional regulation of the heterochronic gene lin-14 by lin-4 mediates temporal pattern formation in C. elegans , 1993, Cell.
[44] M. Belfort,et al. Group I and group II introns , 1993, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[45] E. Blackburn,et al. Template boundary in a yeast telomerase specified by RNA structure. , 2000, Science.
[46] M. Roth,et al. Distribution of pre-mRNA splicing factors at sites of RNA polymerase II transcription. , 1997, Genes & development.
[47] Lukas C. Kühn,et al. A stem-loop in the 3′ untranslated region mediates iron-dependent regulation of transferrin receptor mRNA stability in the cytoplasm , 1988, Cell.
[48] N. Sonenberg,et al. Cap-independent translation of poliovirus mRNA is conferred by sequence elements within the 5' noncoding region , 1988, Molecular and cellular biology.
[49] Peter Walter,et al. Removal of the Alu structural domain from signal recognition particle leaves its protein translocation activity intact , 1986, Nature.
[50] M. Jacobs-Lorena,et al. Regulation of mRNA stability in development. , 1994, Annual review of genetics.
[51] S. Peltz,et al. Autogenous regulation of histone mRNA decay by histone proteins in a cell-free system , 1987, Molecular and cellular biology.
[52] A. Prats,et al. Alternative translation of human fibroblast growth factor 2 mRNA occurs by internal entry of ribosomes , 1995, Molecular and cellular biology.
[53] T. Lange,et al. TRF1, a mammalian telomeric protein. , 1997, Trends in genetics : TIG.
[54] P. Sharp. Trans splicing: Variation on a familiar theme? , 1987, Cell.
[55] J. Sogo,et al. Recognition of bacteriophage Qbeta plus strand RNA as a template by Qbeta replicase: role of RNA interactions mediated by ribosomal proteins S1 and host factor. , 1997, Journal of Molecular Biology.
[56] G. Dreyfuss,et al. Primary structure and binding activity of the hnRNP U protein: binding RNA through RGG box. , 1992, The EMBO journal.
[57] W. Herr,et al. The mouse telomerase RNA 5"-end lies just upstream of the telomerase template sequence. , 1998, Nucleic acids research.
[58] A. Jacquier,et al. Splice site selection and role of the lariat in a group II intron. , 1991, Journal of molecular biology.
[59] M. Green,et al. Pre-mRNA splicing of IgM exons M1 and M2 is directed by a juxtaposed splicing enhancer and inhibitor. , 1999, Genes & development.
[60] Antonin Morillon,et al. Expression of Human Fibroblast Growth Factor 2 mRNA Is Post-transcriptionally Controlled by a Unique Destabilizing Element Present in the 3′-Untranslated Region between Alternative Polyadenylation Sites* , 1999, The Journal of Biological Chemistry.
[61] G R Skuse,et al. The neurofibromatosis type I messenger RNA undergoes base-modification RNA editing. , 1996, Nucleic acids research.
[62] M. Zuker. On finding all suboptimal foldings of an RNA molecule. , 1989, Science.
[63] S. Peltz,et al. mRNA destabilization triggered by premature translational termination depends on at least three cis-acting sequence elements and one trans-acting factor. , 1993, Genes & development.
[64] M. Wickens,et al. Deviants — or emissaries , 1994, Nature.
[65] G. Chisolm,et al. An RNA-binding protein recognizes a mammalian selenocysteine insertion sequence element required for cotranslational incorporation of selenocysteine , 1997, Molecular and cellular biology.
[66] J. Maizel,et al. Novel GACG-hairpin pair motif in the 5' untranslated region of type C retroviruses related to murine leukemia virus , 1992, Journal of virology.
[67] S. Udem,et al. Ribosomal RNA synthesis in Saccharomyces cerevisiae. , 1972, Journal of molecular biology.
[68] M. Aoki,et al. Transient decrease in high blood pressure by in vivo transfer of antisense oligodeoxynucleotides against rat angiotensinogen. , 1995, Hypertension.
[69] N. Gray,et al. IRP-1 binding to ferritin mRNA prevents the recruitment of the small ribosomal subunit by the cap-binding complex eIF4F. , 1998, Molecular cell.
[70] A. Böck,et al. Role of stoichiometry between mRNA, translation factor SeIB and selenocysteyl‐tRNA in selenoprotein synthesis , 1996, Molecular microbiology.
[71] A. Paul,et al. Protein-primed RNA synthesis by purified poliovirus RNA polymerase , 1998, Nature.
[72] R. Pelle,et al. In vivo UV-cross-linking hybridization: a powerful technique for isolating RNA binding proteins. Application to trypanosome mini-exon derived RNA. , 1993, Nucleic acids research.
[73] V A Zakian,et al. Telomeres: Beginning to Understand the End , 1995, Science.
[74] J. T. Madison,et al. Structure of a Ribonucleic Acid , 1965, Science.
[75] H. Hirsch,et al. Interleukin-3 mRNA Stabilization by a trans-Acting Mechanism in Autocrine Tumors Lacking Interleukin-3 Gene Rearrangements (*) , 1995, The Journal of Biological Chemistry.
[76] Y. Hod,et al. Induction of G alpha i2-specific antisense RNA in vivo inhibits neonatal growth. , 1993, Science.
[77] E. Westhof,et al. A common motif organizes the structure of multi-helix loops in 16 S and 23 S ribosomal RNAs. , 1998, Journal of molecular biology.
[78] C. Ehresmann,et al. DNA synthesis . type 1 in genomic RNA packaging and proviral virusinitiation site of human immunodeficiency A dual role of the putative RNA dimerization , 1996 .
[79] R. Thach,et al. Effects of the ferritin open reading frame on translational induction by iron. , 1996, Progress in nucleic acid research and molecular biology.
[80] R. Mahendran,et al. Insertional editing in mitochondria of Physarum. , 1993, Seminars in cell biology.
[81] D. Brow,et al. A spontaneous duplication in U6 spliceosomal RNA uncouples the early and late functions of the ACAGA element in vivo. , 1996, RNA.
[82] K. Stuart. The RNA editing process in Trypanosoma brucei. , 1993, Seminars in cell biology.
[83] A. Michon,et al. Translational control of oskar generates short OSK, the isoform that induces pole plasma assembly. , 1995, Development.
[84] M. Rosenberg,et al. Regulated Antisense RNA Eliminates Alpha-Toxin Virulence in Staphylococcus aureus Infection , 1999, Journal of bacteriology.
[85] M. Uno,et al. A tripeptide ‘anticodon’ deciphers stop codons in messenger RNA , 2000, Nature.
[86] J. Steitz. Splicing takes a holliday. , 1992, Science.
[87] D. Mills,et al. An extracellular Darwinian experiment with a self-duplicating nucleic acid molecule. , 1967, Proceedings of the National Academy of Sciences of the United States of America.
[88] A. Lamond,et al. RNA splicing: Unexpected spliceosome diversity , 1996, Current Biology.
[89] R Staden,et al. The staden sequence analysis package , 1996, Molecular biotechnology.
[90] J. Berger,et al. Structure of the RNA polymerase domain of E. coli primase. , 2000, Science.
[91] O. MacDougald,et al. A 30-kDa alternative translation product of the CCAAT/enhancer binding protein alpha message: transcriptional activator lacking antimitotic activity. , 1993, Proceedings of the National Academy of Sciences of the United States of America.
[92] M. Kozak. The scanning model for translation: an update , 1989, The Journal of cell biology.
[93] T. Pan. Novel RNA substrates for the ribozyme from Bacillus subtilis ribonuclease P identified by in vitro selection. , 1995, Biochemistry.
[94] J. Woolford,et al. A protein containing conserved RNA-recognition motifs is associated with ribosomal subunits in Saccharomyces cerevisiae. , 1993, Nucleic acids research.
[95] L. Iverson,et al. Tissue-specific alternative splicing of Shaker potassium channel transcripts results from distinct modes of regulating 3' splice choice. , 1997, Journal of neurobiology.
[96] J. Lee,et al. Disruption of Imprinted X Inactivation by Parent-of-Origin Effects at Tsix , 2000, Cell.
[97] C. Malbon,et al. Insulin action impaired by deficiency of the G-protein subunit Giα2 , 1996, Nature.
[98] C. Florentz,et al. A single methyl group prevents the mischarging of a tRNA , 1994, Nature Structural Biology.
[99] G. Dreyfuss,et al. A nuclear export signal in hnRNP A1: A signal-mediated, temperature-dependent nuclear protein export pathway , 1995, Cell.
[100] N. Sonenberg,et al. Internal ribosome initiation of translation and the control of cell death. , 2000, Trends in genetics : TIG.
[101] Ribozyme trans–splicing and RNA tagging: Following the messenger , 1996, Nature Medicine.
[102] D. Tollervey,et al. Yeast snR30 is a small nucleolar RNA required for 18S rRNA synthesis , 1993, Molecular and cellular biology.
[103] W. Marzluff,et al. The stem-loop structure at the 3' end of histone mRNA is necessary and sufficient for regulation of histone mRNA stability , 1987, Molecular and cellular biology.
[104] June Corwin,et al. Telomerase Catalytic Subunit Homologs from Fission Yeast and Human , 1997 .
[105] D. Baltimore,et al. HIV-1 Gag mutants can dominantly interfere with the replication of the wild-type virus , 1989, Cell.
[106] Daniel R. Richards,et al. Direct allelic variation scanning of the yeast genome. , 1998, Science.
[107] A. Brennicke,et al. Plastid, nuclear and reverse transcriptase sequences in the mitochondrial genome of Oenothera: is genetic information transferred between organelles via RNA? , 1987, The EMBO journal.
[108] Ronald L. Davis,et al. roX1 RNA Paints the X Chromosome of Male Drosophila and Is Regulated by the Dosage Compensation System , 1997, Cell.
[109] Ronald H. A. Plasterk,et al. A genetic link between co-suppression and RNA interference in C. elegans , 2000, Nature.
[110] R. Jaenisch,et al. Long-range cis effects of ectopic X-inactivation centres on a mouse autosome , 1997, Nature.
[111] S. Rastan,et al. Requirement for Xist in X chromosome inactivation , 1996, Nature.
[112] R. Mahendran,et al. RNA editing by cytidine insertion in mitochondria of Physarum polycephalum , 1991, Nature.
[113] P. Sharp,et al. RNAi and double-strand RNA. , 1999, Genes & development.
[114] R. Lloyd,et al. Conserved nucleotide sequences in the open reading frame and 3' untranslated region of selenoprotein P mRNA. , 1993, Proceedings of the National Academy of Sciences of the United States of America.
[115] Bas van Steensel,et al. Control of telomere length by the human telomeric protein TRF1 , 1997, Nature.
[116] M. Huynen,et al. Assessing the reliability of RNA folding using statistical mechanics. , 1997, Journal of molecular biology.
[117] D. Rio,et al. RNA-protein interactions , 1991, Cell.
[118] T. Ueda,et al. RNA editing in the acceptor stem of squid mitochondrial tRNA(Tyr). , 1996, Nucleic acids research.
[119] D. Tollervey,et al. A U3 snoRNP protein with homology to splicing factor PRP4 and G beta domains is required for ribosomal RNA processing. , 1993, The EMBO journal.
[120] H. Noller,et al. The 530 loop of 16S rRNA: a signal to EF-Tu? , 1994, Trends in genetics : TIG.
[121] S. Jentsch. When Proteins Receive Deadly Messages at Birth , 1996, Science.
[122] I. Taylor,et al. Preferential binding of fd gene 5 protein to tetraplex nucleic acid structures. , 2000, Journal of molecular biology.
[123] T Kuner,et al. Control of kinetic properties of AMPA receptor channels by nuclear RNA editing. , 1994, Science.
[124] Michael R. Green,et al. Excision of an intact intron as a novel lariat structure during pre-mRNA splicing in vitro , 1984, Cell.
[125] O. Uhlenbeck,et al. Properties of an in vitro selected Pb2+ cleavage motif. , 1994, Biochemistry.
[126] H. Kössel,et al. Internal editing of the maize chloroplast ndhA transcript restores codons for conserved amino acids. , 1992, The Plant cell.
[127] H. C. Smith. Apolipoprotein B mRNA editing: the sequence to the event. , 1993, Seminars in cell biology.
[128] A. Sachs,et al. A common function for mRNA 5' and 3' ends in translation initiation in yeast. , 1995, Genes & development.
[129] G. Igloi,et al. Editing of a chloroplast mRNA by creation of an initiation codon , 1991, Nature.
[130] Philippe Mourrain,et al. Arabidopsis SGS2 and SGS3 Genes Are Required for Posttranscriptional Gene Silencing and Natural Virus Resistance , 2000, Cell.
[131] J. Lewis,et al. Like attracts like: getting RNA processing together in the nucleus. , 2000, Science.
[132] A. Hinnebusch,et al. Multiple upstream AUG codons mediate translational control of GCN4 , 1986, Cell.
[133] Jack Greenblatt,et al. NMR Structure of the Bacteriophage λ N Peptide/boxB RNA Complex: Recognition of a GNRA Fold by an Arginine-Rich Motif , 1998, Cell.
[134] S. Akhtar,et al. Antisense therapy. , 1996, Current opinion in oncology.
[135] T. Dawson,et al. Regulation of alternative splicing by RNA editing , 1999, Nature.
[136] S. Bernstein,et al. Genetic and biochemical analysis of alternative RNA splicing. , 1994, Advances in genetics.
[137] Gary Ruvkun,et al. The Caenorhabditis elegans heterochronic gene lin-14 encodes a nuclear protein that forms a temporal developmental switch , 1989, Nature.
[138] M. Hentze,et al. Cytoplasmic regulatory functions of the KH-domain proteins hnRNPs K and E1/E2. , 1998, Trends in biochemical sciences.
[139] L. J. Maher,et al. Searching genomes for sequences with the potential to form intrastrand triple helices. , 2000, Journal of molecular biology.
[140] A. Lamond,et al. Structure and function in the nucleus. , 1998, Science.
[141] M. Hentze,et al. Starting at the Beginning, Middle, and End: Translation Initiation in Eukaryotes , 1997, Cell.
[142] E. Spindel,et al. Cloning of complementary DNAs encoding the amphibian bombesin-like peptides Phe8 and Leu8 phyllolitorin from Phyllomedusa sauvagei: potential role of U to C RNA editing in generating neuropeptide diversity. , 1994, Molecular endocrinology.
[143] S. Yoshida,et al. Only one nucleotide insertion to the long variable arm confers an efficient serine acceptor activity upon Saccharomyces cerevisiae tRNA(Leu) in vitro. , 1997, Journal of molecular biology.
[144] Masaru Tomita,et al. Analysis of base-pairing potentials between 16S rRNA and 5' UTR for translation initiation in various prokaryotes , 1999, Bioinform..
[145] R. Garrett,et al. Structural characteristics of the stable RNA introns of archaeal hyperthermophiles and their splicing junctions. , 1994, Journal of molecular biology.
[146] G. Zon,et al. In vivo treatment of human leukemia in a scid mouse model with c-myb antisense oligodeoxynucleotides. , 1992, Proceedings of the National Academy of Sciences of the United States of America.
[147] F. Michel,et al. Structure and activities of group II introns. , 1995, Annual review of biochemistry.
[148] Victor V. Solovyev,et al. Identification of Human Gene Functional Regions Based on Oligonucleotide Composition , 1993, ISMB.
[149] D. Tollervey,et al. Birth of the snoRNPs: the evolution of RNase MRP and the eukaryotic pre-rRNA-processing system. , 1995, Trends in biochemical sciences.
[150] A. Newman. Small nuclear RNAs and pre-mRNA splicing. , 1994, Current opinion in cell biology.
[151] J. Valcárcel,et al. The Drosophila fl(2)d gene, required for female-specific splicing of Sxl and tra pre-mRNAs, encodes a novel nuclear protein with a HQ-rich domain. , 2000, Genetics.
[152] M. Yarmush,et al. Antisense DNA delivery in vivo: liver targeting by receptor-mediated uptake. , 1994, Journal of nuclear medicine : official publication, Society of Nuclear Medicine.
[153] Huntington F. Willard,et al. Remodelling chromatin with RNA , 1997, Nature.
[154] S. Napthine,et al. Evidence for an RNA pseudoknot loop-helix interaction essential for efficient −1 ribosomal frameshifting 1 , 1999, Journal of Molecular Biology.
[155] A. Brennicke,et al. Trans splicing integrates an exon of 22 nucleotides into the nad5 mRNA in higher plant mitochondria. , 1991, The EMBO journal.
[156] R. Kelley,et al. Equality for X Chromosomes , 1995, Science.
[157] Edward N. Trifonov,et al. Interfering contexts of regulatory sequence elements , 1996, Comput. Appl. Biosci..
[158] L. Gold,et al. Crystal structure of the T4 regA translational regulator protein at 1.9 A resolution. , 1995, Science.
[159] D. Bartel,et al. RNA-catalysed nucleotide synthesis , 1998, Nature.
[160] David Hirsh,et al. A trans-spliced leader sequence on actin mRNA in C. elegans , 1987, Cell.
[161] L. Pellizzoni,et al. Involvement of the Xenopus laevis Ro60 autoantigen in the alternative interaction of La and CNBP proteins with the 5'UTR of L4 ribosomal protein mRNA. , 1998, Journal of molecular biology.
[162] R. Lin,et al. U4 small nuclear RNA dissociates from a yeast spliceosome and does not participate in the subsequent splicing reaction , 1991, Molecular and cellular biology.
[163] Anatoly S. Frolov,et al. Prediction of eukaryotic mRNA translational properties , 1999, Bioinform..
[164] M. Fournier,et al. The small nucleolar RNAs. , 1995, Annual review of biochemistry.
[165] 亀山 春,et al. Escherichia coli (K-12) のリン脂質に関する研究(第4報): E. coli (K-12) 無細胞液によるホスファチジン酸の生合成 , 1969 .
[166] A. Brennicke,et al. Cytochrome oxidase subunit II mRNAs in Oenothera mitochondria are edited at 24 sites , 1990, Current Genetics.
[167] R. Perry. RNA processing comes of age , 1981, The Journal of cell biology.
[168] A. Brennicke,et al. Trans splicing in oenothera mitochondria: nad1 mRNAs are edited in exon and trans-splicing group II intron sequences , 1991, Cell.
[169] A. Brennicke,et al. RNA Editing Is Required for Efficient Excision of tRNA from Precursors in Plant Mitochondria (*) , 1996, The Journal of Biological Chemistry.
[170] R. Parker,et al. mRNA Decapping in Yeast Requires Dissociation of the Cap Binding Protein, Eukaryotic Translation Initiation Factor 4E , 2000, Molecular and Cellular Biology.
[171] R. Klausner,et al. Regulating the fate of mRNA: The control of cellular iron metabolism , 1993, Cell.
[172] P. Macdonald,et al. oskar mRNA is localized to the posterior pole of the Drosophila oocyte , 1991, Cell.
[173] Rudolf Jaenisch,et al. Role for DNA methylation in genomic imprinting , 1993, Nature.
[174] H. Temin. RNA-directed DNA synthesis. , 1972, Scientific American.
[175] G. Struhl,et al. Cis- acting sequences responsible for anterior localization of bicoid mRNA in Drosophila embryos , 1988, Nature.
[176] J. Taylor,et al. Initiation of replication of the human hepatitis delta virus genome from cloned DNA: role of delta antigen , 1989, Journal of virology.
[177] A. Brennicke,et al. RNA editing in plant mitochondria. , 1989, Seminars in cell biology.
[178] L. Jin,et al. In situ hybridization: Methods and applications , 1997, Journal of clinical laboratory analysis.
[179] E. Wagner,et al. Structural and functional analyses of the FinP antisense RNA regulatory system of the F conjugative piasmid , 1993, Molecular microbiology.
[180] R. Darnell,et al. Sequence-Specific RNA Binding by a Nova KH Domain Implications for Paraneoplastic Disease and the Fragile X Syndrome , 2000, Cell.
[181] Joel D. Richter,et al. Phosphorylation of CPE binding factor by Eg2 regulates translation of c-mos mRNA , 2000, Nature.
[182] V. Erdmann,et al. Ribonuclease P (RNase P) RNA is converted to a Cd(2+)-ribozyme by a single Rp-phosphorothioate modification in the precursor tRNA at the RNase P cleavage site. , 1996, Proceedings of the National Academy of Sciences of the United States of America.
[183] J P Sarsero,et al. Some novel transcription attenuation mechanisms used by bacteria. , 1996, Biochimie.
[184] T. Nilsen. A Parallel Spliceosome , 1996, Science.
[185] G. Mackie. Ribonuclease E is a 5′-end-dependent endonuclease , 1998, Nature.
[186] N. Standart,et al. Translation of 15‐lipoxygenase mRNA is inhibited by a protein that binds to a repeated sequence in the 3′ untranslated region. , 1994, The EMBO journal.
[187] V. Ruvolo,et al. The transcript encoding the circumsporozoite antigen of Plasmodium berghei utilizes heterogeneous polyadenylation sites. , 1993, Molecular and biochemical parasitology.
[188] M. Ruiz-Echevarría,et al. The RNA Binding Protein Pub1 Modulates the Stability of Transcripts Containing Upstream Open Reading Frames , 2000, Cell.
[189] T. Blumenthal,et al. The C. elegans Trans-spliced leader RNA is bound to Sm and has a trimethylguanosine cap , 1988, Cell.
[190] M. Fournier,et al. Depletion of U14 small nuclear RNA (snR128) disrupts production of 18S rRNA in Saccharomyces cerevisiae. , 1990, Molecular and cellular biology.
[191] S. Lindquist,et al. The preferential translation of Drosophila hsp70 mRNA requires sequences in the untranslated leader , 1985, Cell.
[192] R. Wall,et al. A mechanism for RNA splicing. , 1980, Proceedings of the National Academy of Sciences of the United States of America.
[193] B. Berkhout,et al. The ability of the HIV-1 AAUAAA signal to bind polyadenylation factors is controlled by local RNA structure. , 1999, Nucleic acids research.
[194] M. Greenberg,et al. Two distinct destabilizing elements in the c-fos message trigger deadenylation as a first step in rapid mRNA decay. , 1991, Genes & development.
[195] R. Planta,et al. Isolation and characterization of yeast ribosomal RNA precursors and preribosomes. , 1989, Methods in enzymology.
[196] I. Tinoco,et al. RNA Structure and Stability , 1997 .
[197] M. Ares,et al. Depletion of U3 small nucleolar RNA inhibits cleavage in the 5′ external transcribed spacer of yeast pre‐ribosomal RNA and impairs formation of 18S ribosomal RNA. , 1991, The EMBO journal.
[198] T. Thomas,et al. Low temperature regulated DEAD-box RNA helicase from the Antarctic archaeon, Methanococcoides burtonii. , 2000, Journal of molecular biology.
[199] Aleksandar Milosavljevic,et al. Discovering simple DNA sequences by the algorithmic significance method , 1993, Comput. Appl. Biosci..
[200] R. Parker,et al. Mutations affecting stability and deadenylation of the yeast MFA2 transcript. , 1992, Genes & development.
[201] J. Steitz,et al. The U5 and U6 small nuclear RNAs as active site components of the spliceosome. , 1993, Science.
[202] G. Dreyfuss,et al. RNA-binding proteins as regulators of gene expression. , 1997, Current opinion in genetics & development.
[203] J Abelson,et al. Crystal structure of a dimeric archaeal splicing endonuclease. , 2000, Journal of molecular biology.
[204] M. Hentze,et al. The iron-responsive element binding protein: a method for the affinity purification of a regulatory RNA-binding protein. , 1989, Proceedings of the National Academy of Sciences of the United States of America.
[205] S. Strobel,et al. Nucleotide analog interference mapping of the hairpin ribozyme: implications for secondary and tertiary structure formation. , 1999, Journal of molecular biology.
[206] Joshua T. Jones,et al. Tagging ribozyme reaction sites to follow trans–splicing in mammalian cells , 1996, Nature Medicine.
[207] J. Jost,et al. An estrogen-dependent polysomal protein binds to the 5' untranslated region of the chicken vitellogenin mRNA. , 1991, Nucleic acids research.
[208] G. Mize,et al. In Vitro Translation of the Upstream Open Reading Frame in the Mammalian mRNA EncodingS-Adenosylmethionine Decarboxylase* , 2000, The Journal of Biological Chemistry.
[209] B. Sproat,et al. Reverse transcription using nuclease resistant primers. , 1993, Nucleic acids research.
[210] J. Scott,et al. Apolipoprotein B mRNA editing: a new tier for the control of gene expression. , 1992, Trends in biochemical sciences.
[211] P. Baldi,et al. DNA structure in human RNA polymerase II promoters. , 1998, Journal of molecular biology.
[212] G. Dreyfuss,et al. The K nuclear shuttling domain: a novel signal for nuclear import and nuclear export in the hnRNP K protein , 1997, The EMBO journal.
[213] N. Hecht,et al. Binding of a phosphoprotein to the 3' untranslated region of the mouse protamine 2 mRNA temporally represses its translation , 1993, Molecular and cellular biology.
[214] J. Watson,et al. Involvement of RNA in the Synthesis of Proteins , 1963, Science.
[215] S. Tilghman,et al. Locus unlinked to o-fetoprotein under the control of the murine raf and Rif genes ( regulatory genes / tissue specificity / cDNA cloning / developmental regulation ) VASSILIS PACHNIS , 2022 .
[216] A Renner,et al. RNA structures and folding: from conventional to new issues in structure predictions. , 1997, Current opinion in structural biology.
[217] E. Blackburn,et al. A conserved sequence motif within the exceptionally diverse telomeric sequences of budding yeasts. , 1994, Proceedings of the National Academy of Sciences of the United States of America.
[218] J. Li,et al. Activation of the double-stranded RNA-dependent eIF-2 alpha kinase by cellular RNA from 3T3-F442A cells. , 1991, European journal of biochemistry.
[219] J. Szostak,et al. Ribozyme-catalysed amino-acid transfer reactions , 1996, Nature.
[220] R. Emeson,et al. Glutamate receptor RNA editing in vitro by enzymatic conversion of adenosine to inosine , 1995, Science.
[221] Christine Guthrie,et al. Recognition of the TACTAAC box during mRNA splicing in yeast involves base pairing to the U2-like snRNA , 1987, Cell.
[222] D Eisenberg,et al. Caenorhabditis elegans embryos contain only one major species of Ro RNP. , 1995, RNA.
[223] M. Sagot,et al. Inferring regulatory elements from a whole genome. An analysis of Helicobacter pylori sigma(80) family of promoter signals. , 2000, Journal of molecular biology.
[224] C. Tuerk. Using the SELEX combinatorial chemistry process to find high affinity nucleic acid ligands to target molecules. , 1997, Methods in molecular biology.
[225] N. Navaratnam,et al. An additional editing site is present in apolipoprotein B mRNA. , 1991, Nucleic acids research.
[226] W. Bellini,et al. Hypermutation of the phosphoprotein and altered mRNA editing in the hamster neurotropic strain of measles virus. , 1995, Virology.
[227] T. Cech,et al. Ribozyme-mediated repair of defective mRNA by targeted trans-splicing , 1994, Nature.
[228] C. Guthrie,et al. Genetic analysis of small nuclear RNAs in Saccharomyces cerevisiae: viable sextuple mutant , 1988, Molecular and cellular biology.
[229] A. Shatkin. Capping of eucaryotic mRNAs , 1976, Cell.
[230] A. Hinnebusch,et al. 7 Translational Control of GCN4: Gene-specific Regulation by Phosphorylation of elF2 , 1996 .
[231] Shulin Li,et al. Nonsense surveillance in lymphocytes? , 1998, Immunity.
[232] T. Nilsen. trans-splicing: an update. , 1995, Molecular and biochemical parasitology.
[233] N. Sonenberg,et al. Translational control of gene expression , 2000 .
[234] G. Spinelli,et al. Regulation of the Sea Urchin Early H2A Histone Gene Expression Depends on the Modulator Element and on Sequences Located near the 3′ End , 1999, Biological chemistry.
[235] M. Wickens,et al. Translational controls impinging on the 5'-untranslated region and initiation factor proteins. , 1997, Current opinion in genetics & development.
[236] T. Hazelrigg,et al. In vivo analyses of cytoplasmic transport and cytoskeletal organization during Drosophila oogenesis: characterization of a multi-step anterior localization pathway. , 1998, Development.
[237] D. Tollervey,et al. Function and synthesis of small nucleolar RNAs. , 1997, Current opinion in cell biology.
[238] O. Uhlenbeck,et al. Self‐cleaving catalytic RNA , 1993, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[239] S. Tiwari,et al. Prediction of probable genes by Fourier analysis of genomic sequences , 1997, Comput. Appl. Biosci..
[240] J. Thompson,et al. Multiple sequence alignment with Clustal X. , 1998, Trends in biochemical sciences.
[241] S. Eddy,et al. Homologs of small nucleolar RNAs in Archaea. , 2000, Science.
[242] M. Tuck. The formation of internal 6-methyladenine residues in eucaryotic messenger RNA. , 1992, The International journal of biochemistry.
[243] J. Kudla,et al. RNA editing in tobacco chloroplasts leads to the formation of a translatable psbL mRNA by a C to U substitution within the initiation codon. , 1992, The EMBO journal.
[244] A. Jacobson. 16 Poly(A) Metabolism and Translation: The Closed-loop Model , 1996 .
[245] C. Proud. p70 S6 kinase: an enigma with variations. , 1996, Trends in biochemical sciences.
[246] C. Smythe,et al. Assembly of U7 Small Nuclear Ribonucleoprotein Particle and Histone RNA 3′ Processing in Xenopus Egg Extracts* , 2000, The Journal of Biological Chemistry.
[247] P. Limbach,et al. Summary: the modified nucleosides of RNA. , 1994, Nucleic acids research.
[248] Stephen M. Mount,et al. AT-AC Introns—An ATtACk on Dogma , 1996, Science.