De Novo Prediction of PTBP1 Binding and Splicing Targets Reveals Unexpected Features of Its RNA Recognition and Function
暂无分享,去创建一个
Yu Zhou | Areum Han | Xiang-Dong Fu | Peter Stoilov | Anthony J. Linares | Douglas L. Black | D. Black | P. Stoilov | A. Linares | Xiang-Dong Fu | Yu Zhou | Areum Han
[1] F. Allain,et al. A syn–anti conformational difference allows SRSF2 to recognize guanines and cytosines equally well , 2012, The EMBO journal.
[2] Richard J Jackson,et al. Defining the roles and interactions of PTB. , 2012, Biochemical Society transactions.
[3] Marvin B. Shapiro,et al. RNA splice junctions of different classes of eukaryotes: sequence statistics and functional implications in gene expression. , 1987, Nucleic acids research.
[4] T. Borodina,et al. Transcriptome analysis by strand-specific sequencing of complementary DNA , 2009, Nucleic acids research.
[5] Mohsen Khorshid,et al. PAR-CliP - A Method to Identify Transcriptome-wide the Binding Sites of RNA Binding Proteins , 2010, Journal of visualized experiments : JoVE.
[6] Lily Shiue,et al. Quaking and PTB control overlapping splicing regulatory networks during muscle cell differentiation. , 2013, RNA.
[7] Sean R. Eddy,et al. Biological Sequence Analysis: Probabilistic Models of Proteins and Nucleic Acids , 1998 .
[8] Masato Yano,et al. Ptbp2 represses adult-specific splicing to regulate the generation of neuronal precursors in the embryonic brain. , 2012, Genes & development.
[9] J. Ule,et al. iCLIP reveals the function of hnRNP particles in splicing at individual nucleotide resolution , 2010, Nature Structural &Molecular Biology.
[10] Gil Ast,et al. Comparative analysis detects dependencies among the 5' splice-site positions. , 2004, RNA.
[11] D. Black. Mechanisms of alternative pre-messenger RNA splicing. , 2003, Annual review of biochemistry.
[12] B. Blencowe. Alternative Splicing: New Insights from Global Analyses , 2006, Cell.
[13] Lawrence R. Rabiner,et al. A tutorial on hidden Markov models and selected applications in speech recognition , 1989, Proc. IEEE.
[14] T. Maniatis,et al. The MicroRNA miR-124 promotes neuronal differentiation by triggering brain-specific alternative pre-mRNA splicing. , 2007, Molecular cell.
[15] Alex E. Lash,et al. Gene Expression Omnibus: NCBI gene expression and hybridization array data repository , 2002, Nucleic Acids Res..
[16] M. Ashiya,et al. A neuron-specific splicing switch mediated by an array of pre-mRNA repressor sites: evidence of a regulatory role for the polypyrimidine tract binding protein and a brain-specific PTB counterpart. , 1997, RNA.
[17] J. Valcárcel,et al. Distinct binding specificities and functions of higher eukaryotic polypyrimidine tract-binding proteins. , 1995, Science.
[18] Douglas L Black,et al. Neuronal regulation of pre-mRNA splicing by polypyrimidine tract binding proteins, PTBP1 and PTBP2 , 2012, Critical reviews in biochemistry and molecular biology.
[19] Eric T. Wang,et al. Alternative Isoform Regulation in Human Tissue Transcriptomes , 2008, Nature.
[20] C. Burge,et al. Splicing regulation: from a parts list of regulatory elements to an integrated splicing code. , 2008, RNA.
[21] Hui Jiang,et al. MADS: a new and improved method for analysis of differential alternative splicing by exon-tiling microarrays. , 2008, RNA.
[22] David W. Hosmer,et al. Applied Logistic Regression , 1991 .
[23] J. Fak,et al. Chaolin Zhang and Its Combinatorial Controls Integrative Modeling Defines the Nova Splicing-Regulatory Network , 2013 .
[24] Bo Torben Porse,et al. Psd-95 is post-transcriptionally repressed during early neural development by PTBP1 and PTBP2 , 2011, Nature Neuroscience.
[25] Gene W. Yeo,et al. An RNA code for the FOX2 splicing regulator revealed by mapping RNA-protein interactions in stem cells , 2009, Nature Structural &Molecular Biology.
[26] Eric T. Wang,et al. Transcriptome-wide Regulation of Pre-mRNA Splicing and mRNA Localization by Muscleblind Proteins , 2012, Cell.
[27] Tyson A. Clark,et al. HITS-CLIP yields genome-wide insights into brain alternative RNA processing , 2008, Nature.
[28] G. C. Roberts,et al. Role of an inhibitory pyrimidine element and polypyrimidine tract binding protein in repression of a regulated alpha-tropomyosin exon. , 1969, RNA.
[29] Lauren V. Alpert,et al. Next-generation SELEX identifies sequence and structural determinants of splicing factor binding in human pre-mRNA sequence. , 2009, RNA.
[30] Robert B Darnell,et al. HITS‐CLIP: panoramic views of protein–RNA regulation in living cells , 2010, Wiley interdisciplinary reviews. RNA.
[31] F. Clark,et al. Understanding alternative splicing: towards a cellular code , 2005, Nature Reviews Molecular Cell Biology.
[32] Douglas L Black,et al. Exon repression by polypyrimidine tract binding protein. , 2005, RNA.
[33] Michael R Green,et al. A single polypyrimidine tract binding protein (PTB) binding site mediates splicing inhibition at mouse IgM exons M1 and M2. , 2004, RNA.
[34] Brendan J. Frey,et al. Deciphering the splicing code , 2010, Nature.
[35] Robert Castelo,et al. Regulation of Fas alternative splicing by antagonistic effects of TIA-1 and PTB on exon definition. , 2005, Molecular cell.
[36] Russ P. Carstens,et al. An Intronic Splicing Silencer Causes Skipping of the IIIb Exon of Fibroblast Growth Factor Receptor 2 through Involvement of Polypyrimidine Tract Binding Protein , 2000, Molecular and Cellular Biology.
[37] Schraga Schwartz,et al. Position-dependent alternative splicing activity revealed by global profiling of alternative splicing events regulated by PTB , 2010, Nature Structural &Molecular Biology.
[38] D L Black,et al. Conserved intron elements repress splicing of a neuron-specific c-src exon in vitro , 1995, Molecular and cellular biology.
[39] E. Wagner,et al. Polypyrimidine Tract Binding Protein Antagonizes Exon Definition , 2001, Molecular and Cellular Biology.
[40] Frédéric H.-T. Allain,et al. Sequence-specific binding of single-stranded RNA: is there a code for recognition? , 2006, Nucleic acids research.
[41] Ivo L. Hofacker,et al. Vienna RNA secondary structure server , 2003, Nucleic Acids Res..
[42] B. Blencowe,et al. An RNA map predicting Nova-dependent splicing regulation , 2006, Nature.
[43] I. Pérez,et al. Mutation of PTB binding sites causes misregulation of alternative 3' splice site selection in vivo. , 1997, RNA.
[44] Douglas L Black,et al. A post-transcriptional regulatory switch in polypyrimidine tract-binding proteins reprograms alternative splicing in developing neurons. , 2007, Genes & development.
[45] S Rozen,et al. Primer3 on the WWW for general users and for biologist programmers. , 2000, Methods in molecular biology.
[46] D. Black,et al. Structure of PTB Bound to RNA: Specific Binding and Implications for Splicing Regulation , 2005, Science.
[47] Christopher W. J. Smith,et al. Novel modes of splicing repression by PTB. , 2006, Trends in biochemical sciences.
[48] D. Black,et al. MicroRNAs regulate the expression of the alternative splicing factor nPTB during muscle development. , 2007, Genes & development.
[49] Jernej Ule,et al. CLIP: a method for identifying protein-RNA interaction sites in living cells. , 2005, Methods.
[50] C. Smith,et al. Crossregulation and Functional Redundancy between the Splicing Regulator PTB and Its Paralogs nPTB and ROD1 , 2007, Molecular cell.
[51] David Rueda,et al. RNA looping by PTB: Evidence using FRET and NMR spectroscopy for a role in splicing repression , 2010, Proceedings of the National Academy of Sciences.
[52] Markus Schuelke,et al. An economic method for the fluorescent labeling of PCR fragments , 2000, Nature Biotechnology.
[53] Lourdes Peña Castillo,et al. Rapid and systematic analysis of the RNA recognition specificities of RNA-binding proteins , 2009, Nature Biotechnology.
[54] Gene W. Yeo,et al. Genome-wide analysis of PTB-RNA interactions reveals a strategy used by the general splicing repressor to modulate exon inclusion or skipping. , 2009, Molecular cell.
[55] Jie Wu,et al. SpliceTrap: a method to quantify alternative splicing under single cellular conditions , 2011, Bioinform..
[56] Douglas L. Black,et al. Regulation of the Mutually Exclusive Exons 8a and 8 in the CaV1.2 Calcium Channel Transcript by Polypyrimidine Tract-binding Protein , 2011, The Journal of Biological Chemistry.
[57] Benjamin J. Blencowe,et al. SnapShot: The Splicing Regulatory Machinery , 2008, Cell.