Regulatory Circuit of Human MicroRNA Biogenesis
暂无分享,去创建一个
Zhihua Li | Ji Lee | Rachel Brower-Sinning | Bino John | Bino John | Zhihua Li | Rachel Brower-Sinning | Ji Lee | Rachel A. Brower-Sinning
[1] B. Cullen,et al. The imprinted H19 noncoding RNA is a primary microRNA precursor. , 2007, RNA.
[2] B. Davidson,et al. RNA polymerase III transcribes human microRNAs , 2006, Nature Structural &Molecular Biology.
[3] Tara L. Naylor,et al. microRNAs exhibit high frequency genomic alterations in human cancer. , 2006, Proceedings of the National Academy of Sciences of the United States of America.
[4] Aristotelis Tsirigos,et al. Short blocks from the noncoding parts of the human genome have instances within nearly all known genes and relate to biological processes. , 2006, Proceedings of the National Academy of Sciences of the United States of America.
[5] Colin N. Dewey,et al. A Genome-Wide Map of Conserved MicroRNA Targets in C. elegans , 2006, Current Biology.
[6] G. Stark,et al. Control of the G2/M transition , 2006, Molecular biotechnology.
[7] B. Cullen,et al. Transcriptional Origin of Kaposi's Sarcoma-Associated Herpesvirus MicroRNAs , 2006, Journal of Virology.
[8] N. Rajewsky,et al. Cell-type-specific signatures of microRNAs on target mRNA expression. , 2006, Proceedings of the National Academy of Sciences of the United States of America.
[9] C. Croce,et al. A microRNA expression signature of human solid tumors defines cancer gene targets , 2006, Proceedings of the National Academy of Sciences of the United States of America.
[10] Alexander E. Kel,et al. TRANSFAC® and its module TRANSCompel®: transcriptional gene regulation in eukaryotes , 2005, Nucleic Acids Res..
[11] Andreas Prlic,et al. Ensembl 2006 , 2005, Nucleic Acids Res..
[12] Stijn van Dongen,et al. miRBase: microRNA sequences, targets and gene nomenclature , 2005, Nucleic Acids Res..
[13] F. Slack,et al. A Developmental Timing MicroRNA and Its Target Regulate Life Span in C. elegans , 2005, Science.
[14] C. Burge,et al. The Widespread Impact of Mammalian MicroRNAs on mRNA Repression and Evolution , 2005, Science.
[15] R. Russell,et al. Animal MicroRNAs Confer Robustness to Gene Expression and Have a Significant Impact on 3′UTR Evolution , 2005, Cell.
[16] Alessandro Fatica,et al. A Minicircuitry Comprised of MicroRNA-223 and Transcription Factors NFI-A and C/EBPα Regulates Human Granulopoiesis , 2005, Cell.
[17] Olga Varlamova,et al. A cAMP-response element binding protein-induced microRNA regulates neuronal morphogenesis. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[18] Jennifer Couzin. A New Cancer Player Takes the Stage , 2005, Science.
[19] Edward Yang,et al. Human cytomegalovirus expresses novel microRNAs during productive viral infection , 2005, Cellular microbiology.
[20] Y. Yatabe,et al. A polycistronic microRNA cluster, miR-17-92, is overexpressed in human lung cancers and enhances cell proliferation. , 2005, Cancer research.
[21] E. Miska,et al. MicroRNA functions in animal development and human disease , 2005, Development.
[22] Isaac Bentwich. Prediction and validation of microRNAs and their targets , 2005, FEBS letters.
[23] Muller Fabbri,et al. A MicroRNA signature associated with prognosis and progression in chronic lymphocytic leukemia. , 2005, The New England journal of medicine.
[24] Dennis F. Kibler,et al. Using hexamers to predict cis-regulatory motifs in Drosophila , 2005, BMC Bioinformatics.
[25] D. Ganem,et al. MicroRNAs and viral infection. , 2005, Molecular cell.
[26] A. van den Berg,et al. BIC and miR‐155 are highly expressed in Hodgkin, primary mediastinal and diffuse large B cell lymphomas , 2005, The Journal of pathology.
[27] Martin Tompa,et al. Discovery of regulatory elements in vertebrates through comparative genomics , 2005, Nature Biotechnology.
[28] J. Bénard,et al. [Micro-RNA and oncogenesis]. , 2005, Bulletin du cancer.
[29] Michael T. McManus,et al. Slowing Down the Ras Lane: miRNAs as Tumor Suppressors? , 2005, Science's STKE.
[30] C. Croce,et al. MicroRNA gene expression deregulation in human breast cancer. , 2005, Cancer research.
[31] Daniela C. Zarnescu,et al. Come FLY with us: toward understanding fragile X syndrome , 2005, Genes, brain, and behavior.
[32] T. Vavouri,et al. Prediction of cis-regulatory elements using binding site matrices--the successes, the failures and the reasons for both. , 2005, Current opinion in genetics & development.
[33] C. Croce,et al. miRNAs, Cancer, and Stem Cell Division , 2005, Cell.
[34] Yong Zhao,et al. Serum response factor regulates a muscle-specific microRNA that targets Hand2 during cardiogenesis , 2005, Nature.
[35] Carlos Caldas,et al. Sizing up miRNAs as cancer genes , 2005, Nature Medicine.
[36] H. Ruohola-Baker,et al. Stem cell division is regulated by the microRNA pathway , 2005, Nature.
[37] Kathryn A. O’Donnell,et al. c-Myc-regulated microRNAs modulate E2F1 expression , 2005, Nature.
[38] P. Meltzer. Cancer genomics: Small RNAs with big impacts , 2005, Nature.
[39] S. Lowe,et al. A microRNA polycistron as a potential human oncogene , 2005, Nature.
[40] H. Horvitz,et al. MicroRNA expression profiles classify human cancers , 2005, Nature.
[41] Chris Sander,et al. The developmental miRNA profiles of zebrafish as determined by small RNA cloning. , 2005, Genes & development.
[42] Kristin C. Gunsalus,et al. microRNA Target Predictions across Seven Drosophila Species and Comparison to Mammalian Targets , 2005, PLoS Comput. Biol..
[43] A. de Bruin,et al. Cloning and Characterization of Mouse E2F8, a Novel Mammalian E2F Family Member Capable of Blocking Cellular Proliferation* , 2005, Journal of Biological Chemistry.
[44] K. Gunsalus,et al. Combinatorial microRNA target predictions , 2005, Nature Genetics.
[45] John Bracht,et al. MicroRNAs: a developing story. , 2005, Current opinion in genetics & development.
[46] K. Lindblad-Toh,et al. Systematic discovery of regulatory motifs in human promoters and 3′ UTRs by comparison of several mammals , 2005, Nature.
[47] F. Slack,et al. RAS Is Regulated by the let-7 MicroRNA Family , 2005, Cell.
[48] Mark Gerstein,et al. The temporal patterning microRNA let-7 regulates several transcription factors at the larval to adult transition in C. elegans. , 2005, Developmental cell.
[49] D. Bartel,et al. Microarray profiling of microRNAs reveals frequent coexpression with neighboring miRNAs and host genes. , 2005, RNA.
[50] L. Larue,et al. Mitf cooperates with Rb1 and activates p21Cip1 expression to regulate cell cycle progression , 2005, Nature.
[51] C. Sander,et al. Identification of microRNAs of the herpesvirus family , 2005, Nature Methods.
[52] L. Tarantino,et al. c-Myb and p300 regulate hematopoietic stem cell proliferation and differentiation. , 2005, Developmental cell.
[53] V. Yang,et al. Krüppel-like factors 4 and 5: the yin and yang regulators of cellular proliferation , 2005, Cell Research.
[54] William Stafford Noble,et al. Assessing computational tools for the discovery of transcription factor binding sites , 2005, Nature Biotechnology.
[55] Jennifer Couzin. Cancer biology. A new cancer player takes the stage. , 2005, Science.
[56] Olivier Elemento,et al. Fast and systematic genome-wide discovery of conserved regulatory elements using a non-alignment based approach , 2005, Genome Biology.
[57] V. Kim,et al. The Drosha-DGCR8 complex in primary microRNA processing. , 2004, Genes & development.
[58] B. Cullen,et al. Human microRNAs are processed from capped, polyadenylated transcripts that can also function as mRNAs. , 2004, RNA.
[59] Simon Kasif,et al. GC/AT-content spikes as genomic punctuation marks. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[60] N. Rajewsky,et al. A pancreatic islet-specific microRNA regulates insulin secretion , 2004, Nature.
[61] Marc S. Halfon,et al. Prediction of similarly acting cis-regulatory modules by subsequence profiling and comparative genomics in Drosophila melanogaster and D.pseudoobscura , 2004, Bioinform..
[62] Sanghyuk Lee,et al. MicroRNA genes are transcribed by RNA polymerase II , 2004, The EMBO journal.
[63] Anton J. Enright,et al. Human MicroRNA Targets , 2004, PLoS biology.
[64] John Bracht,et al. Trans-splicing and polyadenylation of let-7 microRNA primary transcripts. , 2004, RNA.
[65] C. Perou,et al. A custom microarray platform for analysis of microRNA gene expression , 2004, Nature Methods.
[66] V. Ambros. The functions of animal microRNAs , 2004, Nature.
[67] C. Burge,et al. Patterns of flanking sequence conservation and a characteristic upstream motif for microRNA gene identification. , 2004, RNA.
[68] T. Wiehe,et al. Comparative genomics: methods and applications , 2004, Naturwissenschaften.
[69] Y. Yatabe,et al. Reduced Expression of the let-7 MicroRNAs in Human Lung Cancers in Association with Shortened Postoperative Survival , 2004, Cancer Research.
[70] Valerian V Dolja,et al. Viral RNA silencing suppressors inhibit the microRNA pathway at an intermediate step. , 2004, Genes & development.
[71] Z. Weng,et al. Detection of functional DNA motifs via statistical over-representation. , 2004, Nucleic acids research.
[72] D. Bartel. MicroRNAs Genomics, Biogenesis, Mechanism, and Function , 2004, Cell.
[73] V. Ambros,et al. A short history of a short RNA , 2004, Cell.
[74] Toru Suzuki,et al. Regulation of Platelet-derived Growth Factor-A Chain by Krüppel-like Factor 5* , 2004, Journal of Biological Chemistry.
[75] C. Burge,et al. Prediction of Mammalian MicroRNA Targets , 2003, Cell.
[76] Anton J. Enright,et al. MicroRNA targets in Drosophila , 2003, Genome Biology.
[77] Julius Brennecke,et al. Identification of Drosophila MicroRNA Targets , 2003, PLoS biology.
[78] S. Szabó,et al. Effect of cysteamine on redox-sensitive thiol-containing proteins in the duodenal mucosa. , 2003, Biochemical and biophysical research communications.
[79] Martin C. Frith,et al. Cluster-Buster: finding dense clusters of motifs in DNA sequences , 2003, Nucleic Acids Res..
[80] R. Vessella,et al. KLF5 is frequently deleted and down‐regulated but rarely mutated in prostate cancer , 2003, The Prostate.
[81] H. Cam,et al. Emerging roles for E2F: beyond the G1/S transition and DNA replication. , 2003, Cancer cell.
[82] R. Urrutia,et al. Sp1- and Krüppel-like transcription factors , 2003, Genome Biology.
[83] C. Croce,et al. Frequent deletions and down-regulation of micro- RNA genes miR15 and miR16 at 13q14 in chronic lymphocytic leukemia , 2002, Proceedings of the National Academy of Sciences of the United States of America.
[84] Ceshi Chen,et al. A possible tumor suppressor role of the KLF5 transcription factor in human breast cancer , 2002, Oncogene.
[85] J. V. Moran,et al. Initial sequencing and analysis of the human genome. , 2001, Nature.
[86] International Human Genome Sequencing Consortium. Initial sequencing and analysis of the human genome , 2001, Nature.
[87] A. Smit. Interspersed repeats and other mementos of transposable elements in mammalian genomes. , 1999, Current opinion in genetics & development.
[88] E. Fraenkel,et al. Structural basis of DNA recognition by the heterodimeric cell cycle transcription factor E2F-DP. , 1999, Genes & development.
[89] Michael Gribskov,et al. Combining evidence using p-values: application to sequence homology searches , 1998, Bioinform..
[90] Gapped BLAST and PSI-BLAST: A new , 1997 .
[91] V. Ambros,et al. The C. elegans heterochronic gene lin-4 encodes small RNAs with antisense complementarity to lin-14 , 1993, Cell.