Polycistronic Animal Virus mRNAs
暂无分享,去创建一个
[1] K. Gupta,et al. Expression of five proteins from the Sendai virus P/C mRNA in infected cells , 1989, Journal of virology.
[2] M. Roner,et al. Control of reovirus messenger RNA translation efficiency by the regions upstream of initiation codons. , 1989, Virology.
[3] H. Varmus,et al. Biosynthesis of the reverse transcriptase of hepatitis B viruses involves de novo translational initiation not ribosomal frameshifting , 1989, Nature.
[4] N. Sonenberg,et al. Internal binding of eucaryotic ribosomes on poliovirus RNA: translation in HeLa cell extracts , 1989, Journal of virology.
[5] R. Lamb,et al. Effect of mutations and deletions in a bicistronic mRNA on the synthesis of influenza B virus NB and NA glycoproteins , 1989, Journal of virology.
[6] N. Sonenberg,et al. Mutational analysis of upstream AUG codons of poliovirus RNA , 1988, Journal of virology.
[7] H. Varmus,et al. Signals for ribosomal frameshifting in the rous sarcoma virus gag-pol region , 1988, Cell.
[8] A. Panganiban. Retroviral gag gene amber codon suppression is caused by an intrinsic cis-acting component of the viral mRNA , 1988, Journal of virology.
[9] A. Geballe,et al. Translational control of cytomegalovirus gene expression is mediated by upstream AUG codons , 1988, Journal of virology.
[10] C. Dabrowski,et al. Translational control of synthesis of simian virus 40 late proteins from polycistronic 19S late mRNA , 1988, Journal of virology.
[11] P. Fabisch,et al. Synthesis of adeno-associated virus structural proteins requires both alternative mRNA splicing and alternative initiations from a single transcript , 1988, Journal of virology.
[12] K. Bieńkowska-Szewczyk,et al. An internal 5'-noncoding region required for translation of poliovirus RNA in vitro , 1988, Journal of virology.
[13] Y. Kuchino,et al. Selective inhibition of formation of suppressor glutamine tRNA in Moloney murine leukemia virus-infected NIH-3T3 cells by Avarol. , 1988, Virology.
[14] E. Wimmer,et al. A segment of the 5' nontranslated region of encephalomyocarditis virus RNA directs internal entry of ribosomes during in vitro translation , 1988, Journal of virology.
[15] D. Baltimore,et al. Translation in mammalian cells of a gene linked to the poliovirus 5' noncoding region. , 1988, Science.
[16] J. Maizel,et al. Comparative sequence analysis of the 5' noncoding region of the enteroviruses and rhinoviruses. , 1988, Virology.
[17] J. Walder,et al. Role of RNase H in hybrid-arrested translation by antisense oligonucleotides. , 1988, Proceedings of the National Academy of Sciences of the United States of America.
[18] R. Andino,et al. An RNA sequence of hundreds of nucleotides at the 5' end of poliovirus RNA is involved in allowing viral protein synthesis , 1988, Journal of virology.
[19] N. Sonenberg,et al. Internal initiation of translation of eukaryotic mRNA directed by a sequence derived from poliovirus RNA , 1988, Nature.
[20] A. Cann,et al. HTLV-II transactivation is regulated by the overlapping tax/rex nonstructural genes. , 1988, Science.
[21] G. Weinstock,et al. Detection of a murine coronavirus nonstructural protein encoded in a downstream open reading frame , 1988, Virology.
[22] L. McGinnes,et al. The P protein and the nonstructural 38K and 29K proteins of Newcastle disease virus are derived from the same open reading frame. , 1988, Virology.
[23] C E Samuel,et al. Biosynthesis of reovirus-specified polypeptides: effect of point mutation of the sequences flanking the 5'-proximal AUG initiator codons of the reovirus S1 and S4 genes on the efficiency of mRNA translation. , 1988, Virology.
[24] 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.
[25] P. Good,et al. Both VP2 and VP3 are synthesized from each of the alternative spliced late 19S RNA species of simian virus 40 , 1988, Journal of virology.
[26] J. Mertz,et al. Mechanisms of synthesis of virion proteins from the functionally bigenic late mRNAs of simian virus 40 , 1988, Journal of virology.
[27] D. Konings,et al. Secondary structure and expression in vivo and in vitro of messenger RNAs into which upstream AUG codons have been inserted. , 1988, European journal of biochemistry.
[28] R. Eisenman,et al. A non-AUG translational initiation in c-myc exon 1 generates an N-terminally distinct protein whose synthesis is disrupted in Burkitt's lymphomas , 1988, Cell.
[29] H. Varmus,et al. Characterization of ribosomal frameshifting in HIV-1 gag-pol expression , 1988, Nature.
[30] D. Kolakofsky,et al. Ribosomal initiation from an ACG codon in the Sendai virus P/C mRNA. , 1988, The EMBO journal.
[31] M. Kozak,et al. Effects of intercistronic length on the efficiency of reinitiation by eucaryotic ribosomes. , 1987, Molecular and cellular biology.
[32] D. Kolakofsky,et al. Identification of an additional Sendai virus non-structural protein encoded by the P/C mRNA. , 1987, The Journal of general virology.
[33] N. Young,et al. Novel transcription map for the B19 (human) pathogenic parvovirus , 1987, Journal of virology.
[34] P. Sharp,et al. An inducible mammalian amber suppressor: Propagation of a poliovirus mutant , 1987, Cell.
[35] C. Thomas Caskey,et al. Translational frameshifting: Where will it stop? , 1987, Cell.
[36] N. Pardigon,et al. The S segment of the Germiston virus RNA genome can code for three proteins. , 1987, Virus research.
[37] H. Varmus,et al. Two efficient ribosomal frameshifting events are required for synthesis of mouse mammary tumor virus gag-related polyproteins. , 1987, Proceedings of the National Academy of Sciences of the United States of America.
[38] A. C. Palmenberg,et al. Effects of cDNA hybridization on translation of encephalomyocarditis virus RNA , 1987, Journal of virology.
[39] H. Beier,et al. Natural UAG suppressor glutamine tRNA is elevated in mouse cells infected with Moloney murine leukemia virus. , 1987, Proceedings of the National Academy of Sciences of the United States of America.
[40] S. Weiss,et al. In Vitro synthesis of two polypeptides from a nonstructural gene of coronavirus mouse hepatitis virus strain A59 , 1987, Virology.
[41] J. Brady,et al. Translational regulation of SV40 early mRNA defines a new viral protein , 1987, Cell.
[42] G. Peters,et al. Complete nucleotide sequence of a milk-transmitted mouse mammary tumor virus: two frameshift suppression events are required for translation of gag and pol , 1987, Journal of virology.
[43] H F Kern,et al. Selection of AUG initiation codons differs in plants and animals. , 1987, The EMBO journal.
[44] R. Kaufman,et al. Translational efficiency of polycistronic mRNAs and their utilization to express heterologous genes in mammalian cells. , 1987, The EMBO journal.
[45] M. Kozak. Regulation of Protein Synthesis in Virus-Infected Animal Cells , 1986, Advances in Virus Research.
[46] M. Kozak. Bifunctional messenger RNAs in eukaryotes , 1986, Cell.
[47] S. Wechsler,et al. Molecular cloning and sequence analysis of the human parainfluenza 3 virus gene encoding the matrix protein. , 1986, Virology.
[48] M. Horwitz,et al. A major internal initiation site for the in vitro translation of the adenovirus DNA polymerase. , 1986, Virology.
[49] D. Luk,et al. Messenger RNA encoding the phosphoprotein (P) gene of human parainfluenza virus 3 is bicistronic. , 1986, Virology.
[50] D. Peabody,et al. Effect of upstream reading frames on translation efficiency in simian virus 40 recombinants , 1986, Molecular and cellular biology.
[51] D. Peabody,et al. Termination-reinitiation occurs in the translation of mammalian cell mRNAs , 1986, Molecular and cellular biology.
[52] M. Estes,et al. Two glycoproteins are produced from the rotavirus neutralization gene. , 1986, Virology.
[53] R. Herman. Internal initiation of translation on the vesicular stomatitis virus phosphoprotein mRNA yields a second protein , 1986, Journal of virology.
[54] M. Kozak. Influences of mRNA secondary structure on initiation by eukaryotic ribosomes. , 1986, Proceedings of the National Academy of Sciences of the United States of America.
[55] I. Katoh,et al. Bovine leukemia virus protease: purification, chemical analysis, and in vitro processing of gag precursor polyproteins , 1986, Journal of virology.
[56] C. Richardson,et al. Ribosomal initiation at alternate AUGs on the Sendai virus P/C mRNA , 1986, Journal of virology.
[57] B. Cullen,et al. Role of the avian retrovirus mRNA leader in expression: evidence for novel translational control , 1986, Molecular and cellular biology.
[58] M. Kozak. Point mutations define a sequence flanking the AUG initiator codon that modulates translation by eukaryotic ribosomes , 1986, Cell.
[59] W. Wold,et al. Evidence that AGUAUAUGA and CCAAGAUGA initiate translation in the same mRNA region E3 of adenovirus. , 1986, Virology.
[60] H. Varmus,et al. Expression of the Rous sarcoma virus pol gene by ribosomal frameshifting. , 1985, Science.
[61] C. Anderson,et al. Direct mapping of adeno-associated virus capsid proteins B and C: a possible ACG initiation codon. , 1985, Proceedings of the National Academy of Sciences of the United States of America.
[62] C. Samuel,et al. Biosynthesis of reovirus-specified polypeptides. The s1 mRNA synthesized in vivo is structurally and functionally indistinguishable from in vitro-synthesized s1 mRNA and encodes two polypeptides, sigma 1a and sigma 1bNS. , 1985, Virology.
[63] W. P. Summers,et al. Utilization of internal AUG codons for initiation of protein synthesis directed by mRNAs from normal and mutant genes encoding herpes simplex virus-specified thymidine kinase , 1985, Journal of virology.
[64] I. Katoh,et al. Translational readthrough of an amber termination codon during synthesis of feline leukemia virus protease , 1985, Journal of virology.
[65] N. Sonenberg,et al. Identification of a new polypeptide coded by reovirus gene S1 , 1985, Journal of virology.
[66] T. Gojobori,et al. Complete nucleotide sequence of an infectious clone of human T-cell leukemia virus type II: an open reading frame for the protease gene. , 1985, Proceedings of the National Academy of Sciences of the United States of America.
[67] C. Samuel,et al. Biosynthesis of reovirus-specified polypeptides: the reovirus s1 mRNA encodes two primary translation products. , 1985, Virology.
[68] I. Katoh,et al. Murine leukemia virus protease is encoded by the gag-pol gene and is synthesized through suppression of an amber termination codon. , 1985, Proceedings of the National Academy of Sciences of the United States of America.
[69] N. Sonenberg,et al. Insertion mutagenesis to increase secondary structure within the 5′ noncoding region of a eukaryotic mRNA reduces translational efficiency , 1985, Cell.
[70] M. Skinner,et al. Coronavirus MHV-JHM mRNA 5 has a sequence arrangement which potentially allows translation of a second, downstream open reading frame. , 1985, The Journal of general virology.
[71] W. Bellini,et al. Measles virus P gene codes for two proteins , 1985, Journal of virology.
[72] G. Evan,et al. The protein encoded by the human proto-oncogene c-myc. , 1984, Proceedings of the National Academy of Sciences of the United States of America.
[73] S. Masri,et al. Molecular cloning and sequencing of the reovirus (serotype 3) S1 gene which encodes the viral ceil attachment protein σ1 , 1984 .
[74] N. Sonenberg,et al. Preferential stimulation of rabbit α globin mRNA translation by a cap-binding protein complex , 1984 .
[75] R. Eisenman,et al. Proteins encoded by the human c-myc oncogene: differential expression in neoplastic cells , 1984, Molecular and cellular biology.
[76] M. Shaw,et al. Studies on the synthesis of the influenza V virus NB glycoprotein. , 1984, Virology.
[77] F. Tamanoi,et al. Mutation of a termination codon affects src initiation , 1984, Molecular and cellular biology.
[78] M. Kozak,et al. Selection of initiation sites by eucaryotic ribosomes: effect of inserting AUG triplets upstream from the coding sequence for preproinsulin. , 1984, Nucleic acids research.
[79] A. Levinson,et al. Initiation of translation at internal AUG codons in mammalian cells , 1984, Nature.
[80] B. Semler,et al. In vitro translation of poliovirus RNA: utilization of internal initiation sites in reticulocyte lysate , 1984, Journal of virology.
[81] A. Nomoto,et al. Complete nucleotide sequences of all three poliovirus serotype genomes. Implication for genetic relationship, gene function and antigenic determinants. , 1984, Journal of molecular biology.
[82] A. Barkan,et al. The number of ribosomes on simian virus 40 late 16S mRNA is determined in part by the nucleotide sequence of its leader , 1984, Molecular and cellular biology.
[83] M. Kozak,et al. Point mutations close to the AUG initiator codon affect the efficiency of translation of rat preproinsulin in vivo , 1984, Nature.
[84] N. Pardigon,et al. A transcript from the S segment of the Germiston bunyavirus is uncapped and codes for the nucleoprotein and a nonstructural protein , 1984, Journal of virology.
[85] M. Kozak. Compilation and analysis of sequences upstream from the translational start site in eukaryotic mRNAs. , 1984, Nucleic acids research.
[86] C. Giorgi,et al. Sendai virus contains overlapping genes expressed from a single mRNA , 1983, Cell.
[87] P. Sharp,et al. Measurement of suppressor transfer RNA activity. , 1983, Science.
[88] R. Lamb,et al. A previously unrecognized influenza B virus glycoprotein from a bicistronic mRNA that also encodes the viral neuraminidase. , 1983, Proceedings of the National Academy of Sciences of the United States of America.
[89] D. Bishop,et al. Bunyavirus nucleoprotein, N, and a non-structural protein, NSS, are coded by overlapping reading frames in the S RNA. , 1983, The Journal of general virology.
[90] D. Kolakofsky,et al. In vitro synthesis of the nonstructural C protein of Sendai virus , 1983, Journal of virology.
[91] A. Srivastava,et al. Nucleotide sequence and organization of the adeno-associated virus 2 genome , 1983, Journal of virology.
[92] P. Sharp,et al. An amber suppressor tRNA gene derived by site-specific mutagenesis: cloning and function in mammalian cells. , 1982, Proceedings of the National Academy of Sciences of the United States of America.
[93] E. Wimmer,et al. Identification of the initiation site of poliovirus polyprotein synthesis , 1982, Journal of virology.
[94] J. Bos,et al. The 2.2 kb E1b mRNA of human Ad12 and Ad5 codes for two tumor antigens starting at different AUG triplets , 1981, Cell.
[95] M. Kozak. Possible role of flanking nucleotides in recognition of the AUG initiator codon by eukaryotic ribosomes. , 1981, Nucleic acids research.
[96] D. Baltimore,et al. Molecular cloning of poliovirus cDNA and determination of the complete nucleotide sequence of the viral genome. , 1981, Proceedings of the National Academy of Sciences of the United States of America.
[97] B. Semler,et al. Primary structure, gene organization and polypeptide expression of poliovirus RNA , 1981, Nature.
[98] C. Anderson,et al. Identification of the SV40 agnogene product: a DNA binding protein , 1981, Nature.
[99] D. McGeoch,et al. Identification and mapping of two polypeptides encoded within the herpes simplex virus type 1 thymidine kinase gene sequences , 1981, Journal of virology.
[100] W. Filipowicz,et al. Binding of ribosomes to linear and circular forms of the 5'-terminal leader fragment of tobacco-mosaic-virus RNA. , 1981, European journal of biochemistry.
[101] M. Kozak. Role of ATP in binding and migration of 40S ribosomal subunits , 1980, Cell.
[102] R. Roeder,et al. Transcripts of the adeno-associated virus genome: mapping of the major RNAs , 1980, Journal of virology.
[103] M. Kozak. Influence of mRNA secondary structure on binding and migration of 40S ribosomal subunits , 1980, Cell.
[104] H. Westphal,et al. Spliced adenovirus-associated virus RNA. , 1979, Proceedings of the National Academy of Sciences of the United States of America.
[105] M. Kozak. Inability of circular mRNA to attach to eukaryotic ribosomes , 1979, Nature.
[106] R. Buller,et al. Characterization of adenovirus-associated virus-induced polypeptides in KB cells , 1978, Journal of virology.
[107] R. Lamb,et al. The synthesis of sendai virus polypeptides in infected cells. , 1977, Virology.
[108] C. Samuel,et al. Biosynthesis of reovirus-specified polypeptides. Effect of methylation on the efficiency of reovirus genome expression in vitro. , 1977, Virology.
[109] A. Shatkin. Capping of eucaryotic mRNAs , 1976, Cell.
[110] E. Ehrenfeld,et al. Translation of poliovirus RNA in vitro: detection of two different initiation sites. , 1975, Journal of molecular biology.
[111] N. Sonenberg. Regulation of translation by poliovirus. , 1987, Advances in virus research.
[112] A. Shatkin,et al. Reovirus hemagglutinin mRNA codes for two polypeptides in overlapping reading frames. , 1985, Proceedings of the National Academy of Sciences of the United States of America.
[113] J. Wiener,et al. Sequences of the S1 genes of the three serotypes of reovirus. , 1985, Proceedings of the National Academy of Sciences of the United States of America.
[114] H. Varmus,et al. Molecular biology of tumor viruses. RNA tumor viruses. , 1982 .
[115] M. Kozak,et al. Mechanism of mRNA recognition by eukaryotic ribosomes during initiation of protein synthesis. , 1981, Current topics in microbiology and immunology.
[116] J. Celis,et al. Nonsense mutations and tRNA suppressors , 1979 .
[117] V. Georgiev. Virology , 1955, Nature.