标题
Genomic functions of U2AF in constitutive and regulated splicing
作者
关键词
-
出版物
RNA Biology
Volume 12, Issue 5, Pages 479-485
出版商
Informa UK Limited
发表日期
2015-05-07
DOI
10.1080/15476286.2015.1020272
参考文献
相关参考文献
注意:仅列出部分参考文献,下载原文获取全部文献信息。- Context-dependent control of alternative splicing by RNA-binding proteins
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- Mechanisms for U2AF to define 3′ splice sites and regulate alternative splicing in the human genome
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- The genetic basis of myelodysplasia and its clinical relevance
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- Direct Competition between hnRNP C and U2AF65 Protects the Transcriptome from the Exonization of Alu Elements
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- SR Proteins Collaborate with 7SK and Promoter-Associated Nascent RNA to Release Paused Polymerase
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- hnRNP A1 Proofreads 3′ Splice Site Recognition by U2AF
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- YB-1 binds to CAUC motifs and stimulates exon inclusion by enhancing the recruitment of U2AF to weak polypyrimidine tracts
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- Position-dependent splicing activation and repression by SR and hnRNP proteins rely on common mechanisms
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- The U2AF35-related protein Urp contacts the 3' splice site to promote U12-type intron splicing and the second step of U2-type intron splicing
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- Genomic mRNA Profiling Reveals Compensatory Mechanisms for the Requirement of the Essential Splicing Factor U2AF
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- U1 snRNP protects pre-mRNAs from premature cleavage and polyadenylation
- (2010) Daisuke Kaida et al. NATURE
- iCLIP Predicts the Dual Splicing Effects of TIA-RNA Interactions
- (2010) Zhen Wang et al. PLOS BIOLOGY
- The Spliceosome: Design Principles of a Dynamic RNP Machine
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- Genome-wide Analysis of PTB-RNA Interactions Reveals a Strategy Used by the General Splicing Repressor to Modulate Exon Inclusion or Skipping
- (2009) Yuanchao Xue et al. MOLECULAR CELL
- Differential 3' splice site recognition of SMN1 and SMN2 transcripts by U2AF and U2 snRNP
- (2009) M. Martins de Araujo et al. RNA
- Polypyrimidine tract binding protein controls the transition from exon definition to an intron defined spliceosome
- (2008) Shalini Sharma et al. NATURE STRUCTURAL & MOLECULAR BIOLOGY
- The splicing factor SC35 has an active role in transcriptional elongation
- (2008) Shengrong Lin et al. NATURE STRUCTURAL & MOLECULAR BIOLOGY
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