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  3. CstF64: cell cycle regulation and functional role in 3' end processing of replication-dependent histone mRNAs.
 

CstF64: cell cycle regulation and functional role in 3' end processing of replication-dependent histone mRNAs.

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BORIS DOI
10.7892/boris.68847
Publisher DOI
10.1128/MCB.00791-14
PubMed ID
25266659
Description
The 3' end processing of animal replication-dependent histone mRNAs is activated during G1/S-phase transition. The processing site is recognized by stem-loop binding protein and the U7 snRNP, but cleavage additionally requires a heat-labile factor (HLF), composed of cleavage/polyadenylation specificity factor, symplekin, and cleavage stimulation factor 64 (CstF64). Although HLF has been shown to be cell cycle regulated, the mechanism of this regulation is unknown. Here we show that levels of CstF64 increase toward the S phase and its depletion affects histone RNA processing, S-phase progression, and cell proliferation. Moreover, analyses of the interactions between CstF64, symplekin, and the U7 snRNP-associated proteins FLASH and Lsm11 indicate that CstF64 is important for recruiting HLF to histone precursor mRNA (pre-mRNA)-resident proteins. Thus, CstF64 is central to the function of HLF and appears to be at least partly responsible for its cell cycle regulation. Additionally, we show that misprocessed histone transcripts generated upon CstF64 depletion mainly accumulate in the nucleus, where they are targets of the exosome machinery, while a small cytoplasmic fraction is partly associated with polysomes.
Date of Publication
2014-12-01
Publication Type
Article
Subject(s)
500 Science > 570 Life sciences; biology
Language(s)
en
Contributor(s)
Romeo, Valentina
Institut für Zellbiologie (IZB)
Griesbach, Esther
Institut für Zellbiologie (IZB)
Schümperli, Danielorcid-logo
Institut für Zellbiologie (IZB)
Additional Credits
Institut für Zellbiologie (IZB)
Series
Molecular and cellular biology
Publisher
American Society for Microbiology
ISSN
0270-7306
Access(Rights)
restricted
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