| Literature DB >> 27708105 |
Arun Kanakkanthara1, Karthik B Jeganathan1, Jazeel F Limzerwala2, Darren J Baker1, Masakazu Hamada1, Hyun-Ja Nam1, Willemijn H van Deursen1, Naomi Hamada1, Ryan M Naylor2, Nicole A Becker2, Brian A Davies2, Janine H van Ree1, Georges Mer2, Virginia S Shapiro3, L James Maher2, David J Katzmann2, Jan M van Deursen4.
Abstract
Cyclin A2 activates the cyclin-dependent kinases Cdk1 and Cdk2 and is expressed at elevated levels from S phase until early mitosis. We found that mutant mice that cannot elevate cyclin A2 are chromosomally unstable and tumor-prone. Underlying the chromosomal instability is a failure to up-regulate the meiotic recombination 11 (Mre11) nuclease in S phase, which leads to impaired resolution of stalled replication forks, insufficient repair of double-stranded DNA breaks, and improper segregation of sister chromosomes. Unexpectedly, cyclin A2 controlled Mre11 abundance through a C-terminal RNA binding domain that selectively and directly binds Mre11 transcripts to mediate polysome loading and translation. These data reveal cyclin A2 as a mechanistically diverse regulator of DNA replication combining multifaceted kinase-dependent functions with a kinase-independent, RNA binding-dependent role that ensures adequate repair of common replication errors.Entities:
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Year: 2016 PMID: 27708105 PMCID: PMC5109925 DOI: 10.1126/science.aaf7463
Source DB: PubMed Journal: Science ISSN: 0036-8075 Impact factor: 47.728