| Literature DB >> 24797635 |
Wenjing Liu1, Lu Wang2, Weidong Zhao3, Gendi Song3, Rener Xu4, Guishuan Wang2, Fei Wang2, Wenqing Li2, Jie Lian2, Hui Tian2, Xiaorong Wang2, Fei Sun5.
Abstract
Telomere clustering is a widespread phenomenon among eukaryotes. However, the molecular mechanisms that regulate formation of telomere clustering in mammalian meiotic prophase I, are still largely unknown. Here, we show that CDK2, especially p39(cdk2), as a potential meiosis-specific connector interaction with SUN1 mediates formation of telomere clustering during mouse meiosis. The transition from CDK2 to p-CDK2 also regulates the progression from homologous recombination to desynapsis by interacting with MLH1. In addition, disappearance of CDK2 on the telomeres and of p-CDK2 on recombination sites, were observed in Sun1(-/-) mice and in pachytene-arrested hybrid sterile mice (pwk×C57BL/6 F1), respectively. These results suggest that transition from CDK2 to p-CDK2 plays a critical role for regulating meiosis progression.Entities:
Keywords: MLH1; Meiosis; Mouse; Recombination; SUN1; Synapsis; Telomere clustering; p39(cdk2)/p-CDK2
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Year: 2014 PMID: 24797635 DOI: 10.1016/j.ydbio.2014.04.018
Source DB: PubMed Journal: Dev Biol ISSN: 0012-1606 Impact factor: 3.582