| Literature DB >> 30303743 |
Incheol Ryu1,2, Yeonkyoung Park1,2, Jwa-Won Seo3, Ok Hyun Park1,2, Hongseok Ha1,2, Jin-Wu Nam3,4, Yoon Ki Kim1,2.
Abstract
All metazoan mRNAs have a poly(A) tail at the 3' end with the exception of replication-dependent histone (RDH) mRNAs, which end in a highly conserved stem-loop (SL) structure. However, a subset of RDH mRNAs are reported to be polyadenylated under physiologic conditions. The molecular details of the biogenesis of polyadenylated RDH [poly(A)+ RDH] mRNAs remain unknown. In this study, our genome-wide analyses reveal that puromycin treatment or UVC irradiation stabilizes poly(A)+ RDH mRNAs, relative to canonical RDH mRNAs, which end in an SL structure. We demonstrate that the stabilization of poly(A)+ RDH mRNAs occurs in a translation-independent manner and is regulated via human antigen R (HuR) binding to the extended 3' UTR under stress conditions. Our data suggest that HuR regulates the expression of poly(A)+ RDH mRNAs.-Ryu, I., Park, Y., Seo, J.-W., Park, O. H., Ha, H., Nam, J.-W., Kim, Y. K. HuR stabilizes a polyadenylated form of replication-dependent histone mRNAs under stress conditions.Entities:
Keywords: 3′UTR; UVC; mRNA stability; polyadenylation signal
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Year: 2018 PMID: 30303743 DOI: 10.1096/fj.201800431R
Source DB: PubMed Journal: FASEB J ISSN: 0892-6638 Impact factor: 5.191