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Translational control of a human

Authors :
Ann E, Collier
Dan F, Spandau
Ronald C, Wek
Source :
Molecular Biology of the Cell
Publication Year :
2017

Abstract

Phosphorylation of eIF2 and the integrated stress response in response to UVB are cytoprotective by a mechanism featuring preferential translation of a specific splice variant of CDKN1A that facilitates G1 arrest and subsequent DNA repair.<br />In response to sublethal ultraviolet B (UVB) irradiation, human keratinocytes transiently block progression of the cell cycle to allow ample time for DNA repair and cell fate determination. These cellular activities are important for avoiding the initiation of carcinogenesis in skin. Central to these processes is the repression of initiation of mRNA translation through GCN2 phosphorylation of eIF2α (eIF2α-P). Concurrent with reduced global protein synthesis, eIF2α-P and the accompanying integrated stress response (ISR) selectively enhance translation of mRNAs involved in stress adaptation. In this study, we elucidated a mechanism for eIF2α-P cytoprotection in response to UVB in human keratinocytes. Loss of eIF2α-P induced by UVB diminished G1 arrest, DNA repair, and cellular senescence coincident with enhanced cell death in human keratinocytes. Genome-wide analysis of translation revealed that the mechanism for these critical adaptive responses by eIF2α-P involved induced expression of CDKN1A encoding the p21 (CIP1/WAF1) protein. We further show that human CDKN1A mRNA splice variant 4 is preferentially translated following stress-induced eIF2α-P by a mechanism mediated in part by upstream ORFs situated in the 5′-leader of CDKN1A mRNA. We conclude that eIF2α-P is cytoprotective in response to UVB by a mechanism featuring translation of a specific splice variant of CDKN1A that facilitates G1 arrest and subsequent DNA repair.

Details

ISSN :
19394586
Volume :
29
Issue :
1
Database :
OpenAIRE
Journal :
Molecular biology of the cell
Accession number :
edsair.pmid..........1a21b1ba62b7a9bfe7c5ab616fdb6516