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U1 snRNP Determines mRNA Length and Regulates Isoform Expression
Author(s) -
Michael G. Berg,
Larry N. Singh,
Ihab Younis,
Qiang Liu,
Anna Maria Pinto,
Daisuke Kaida,
Zhenxi Zhang,
Sungchan Cho,
Scott Sherrill-Mix,
Lili Wan,
Gideon Dreyfuss
Publication year - 2012
Publication title -
cell
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 26.304
H-Index - 776
eISSN - 1097-4172
pISSN - 0092-8674
DOI - 10.1016/j.cell.2012.05.029
Subject(s) - biology , polyadenylation , rna splicing , alternative splicing , exon , microbiology and biotechnology , intron , messenger rna , ribonucleoprotein , transcriptome , nonsense mediated decay , snrnp , gene isoform , gene expression , gene , genetics , rna
U1 snRNP (U1), in addition to its splicing role, protects pre-mRNAs from drastic premature termination by cleavage and polyadenylation (PCPA) at cryptic polyadenylation signals (PASs) in introns. Here, a high-throughput sequencing strategy of differentially expressed transcripts (HIDE-seq) mapped PCPA sites genome wide in divergent organisms. Surprisingly, whereas U1 depletion terminated most nascent gene transcripts within ~1 kb, moderate functional U1 level decreases, insufficient to inhibit splicing, dose-dependently shifted PCPA downstream and elicited mRNA 3' UTR shortening and proximal 3' exon switching characteristic of activated immune and neuronal cells, stem cells, and cancer. Activated neurons' signature mRNA shortening could be recapitulated by U1 decrease and antagonized by U1 overexpression. Importantly, we show that rapid and transient transcriptional upregulation inherent to neuronal activation physiology creates U1 shortage relative to pre-mRNAs. Additional experiments suggest cotranscriptional PCPA counteracted by U1 association with nascent transcripts, a process we term telescripting, ensuring transcriptome integrity and regulating mRNA length.

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