Protein factors in pre-mRNA 3′-end processing

CR Mandel, Y Bai, L Tong - Cellular and Molecular Life Sciences, 2008 - Springer
Most eukaryotic mRNA precursors (premRNAs) must undergo extensive processing,
including cleavage and polyadenylation at the 3′-end. Processing at the 3′-end is …

Pre‐mRNA 3′‐end processing complex assembly and function

S Chan, EA Choi, Y Shi - Wiley Interdisciplinary Reviews: RNA, 2011 - Wiley Online Library
The 3′‐ends of almost all eukaryotic mRNAs are formed in a two‐step process, an
endonucleolytic cleavage followed by polyadenylation (the addition of a poly‐adenosine or …

[HTML][HTML] Molecular architecture of the human pre-mRNA 3′ processing complex

Y Shi, DC Di Giammartino, D Taylor, A Sarkeshik… - Molecular cell, 2009 - cell.com
Pre-mRNA 3′ end formation is an essential step in eukaryotic gene expression. Over half of
human genes produce alternatively polyadenylated mRNAs, suggesting that regulated …

Structure of an active human histone pre-mRNA 3′-end processing machinery

Y Sun, Y Zhang, WS Aik, XC Yang, WF Marzluff, T Walz… - Science, 2020 - science.org
The 3′-end processing machinery for metazoan replication-dependent histone precursor
messenger RNAs (pre-mRNAs) contains the U7 small nuclear ribonucleoprotein and shares …

[HTML][HTML] Enterovirus 71 3C protease cleaves a novel target CstF-64 and inhibits cellular polyadenylation

KF Weng, ML Li, CT Hung, SR Shih - PLoS pathogens, 2009 - journals.plos.org
Identification of novel cellular proteins as substrates to viral proteases would provide a new
insight into the mechanism of cell–virus interplay. Eight nuclear proteins as potential targets …

[HTML][HTML] Activation of the endonuclease that defines mRNA 3′ ends requires incorporation into an 8-subunit core cleavage and polyadenylation factor complex

CH Hill, V Boreikaitė, A Kumar, A Casañal, P Kubík… - Molecular cell, 2019 - cell.com
Cleavage and polyadenylation factor (CPF/CPSF) is a multi-protein complex essential for
formation of eukaryotic mRNA 3ʹ ends. CPF cleaves pre-mRNAs at a specific site and adds …

[HTML][HTML] Poly (A) signal-dependent transcription termination occurs through a conformational change mechanism that does not require cleavage at the poly (A) site

H Zhang, F Rigo, HG Martinson - Molecular cell, 2015 - cell.com
Transcription termination for genes encoding polyadenylated mRNAs requires a functional
poly (A) signal (PAS) in the nascent pre-mRNA. Often called PAS-dependent termination, or …

Transcription elongation factor ELL2 directs immunoglobulin secretion in plasma cells by stimulating altered RNA processing

K Martincic, SA Alkan, A Cheatle, L Borghesi… - Nature …, 2009 - nature.com
Immunoglobulin secretion is modulated by competition between the use of a weak promoter-
proximal poly (A) site and a nonconsensus splice site in the final secretory-specific exon of …

Functional coupling of last-intron splicing and 3′-end processing to transcription in vitro: the poly (A) signal couples to splicing before committing to cleavage

F Rigo, HG Martinson - Molecular and cellular biology, 2008 - Am Soc Microbiol
We have developed an in vitro transcription system, using HeLa nuclear extract, that
supports not only efficient splicing of a multiexon transcript but also efficient cleavage and …

Delineating the structural blueprint of the pre-mRNA 3′-end processing machinery

K Xiang, L Tong, JL Manley - Molecular and cellular biology, 2014 - Taylor & Francis
Processing of mRNA precursors (pre-mRNAs) by polyadenylation is an essential step in
gene expression. Polyadenylation consists of two steps, cleavage and poly (A) synthesis …