在多聚(ADP - 核糖)聚合酶(Parp - 1)缺失的卵母细胞中,减数分裂染色体联会之后组蛋白H2AX磷酸化的持续存在及着丝粒异常黏连。
Persistence of histone H2AX phosphorylation after meiotic chromosome synapsis and abnormal centromere cohesion in poly (ADP-ribose) polymerase (Parp-1) null oocytes.
作者信息
Yang Feikun, Baumann Claudia, De La Fuente Rabindranath
机构信息
Department of Clinical Studies, Center for Animal Transgenesis and Germ Cell Research, University of Pennsylvania, New Bolton Center, Kennett Square, 19348, USA.
出版信息
Dev Biol. 2009 Jul 15;331(2):326-38. doi: 10.1016/j.ydbio.2009.05.550. Epub 2009 May 19.
In spite of the impact of aneuploidy on human health little is known concerning the molecular mechanisms involved in the formation of structural or numerical chromosome abnormalities during meiosis. Here, we provide novel evidence indicating that lack of PARP-1 function during oogenesis predisposes the female gamete to genome instability. During prophase I of meiosis, a high proportion of Parp-1((-/-)) mouse oocytes exhibit a spectrum of meiotic defects including incomplete homologous chromosome synapsis or persistent histone H2AX phosphorylation in fully synapsed chromosomes at the late pachytene stage. Moreover, the X chromosome bivalent is also prone to exhibit persistent double strand DNA breaks (DSBs). In striking contrast, such defects were not detected in mutant pachytene spermatocytes. In fully-grown wild type oocytes at the germinal vesicle stage, PARP-1 protein associates with nuclear speckles and upon meiotic resumption, undergoes a striking re-localization towards spindle poles as well as pericentric heterochromatin domains at the metaphase II stage. Notably, a high proportion of in vivo matured Parp-1((-/-)) oocytes show lack of recruitment of the kinetochore-associated protein BUB3 to centromeric domains and fail to maintain metaphase II arrest. Defects in chromatin modifications in the form of persistent histone H2AX phosphorylation during prophase I of meiosis and deficient sister chromatid cohesion during metaphase II predispose mutant oocytes to premature anaphase II onset upon removal from the oviductal environment. Our results indicate that PARP-1 plays a critical role in the maintenance of chromosome stability at key stages of meiosis in the female germ line. Moreover, in the metaphase II stage oocyte PARP-1 is required for the regulation of centromere structure and function through a mechanism that involves the recruitment of BUB3 protein to centromeric domains.
尽管非整倍体对人类健康有影响,但对于减数分裂过程中结构或数量染色体异常形成所涉及的分子机制却知之甚少。在此,我们提供了新的证据,表明卵子发生过程中PARP-1功能的缺失使雌配子易发生基因组不稳定。在减数分裂前期I,高比例的Parp-1(-/-)小鼠卵母细胞表现出一系列减数分裂缺陷,包括不完全同源染色体联会或在粗线期后期完全联会的染色体中持续存在组蛋白H2AX磷酸化。此外,X染色体二价体也容易出现持续的双链DNA断裂(DSB)。与之形成鲜明对比的是,在突变的粗线期精母细胞中未检测到此类缺陷。在生发泡期完全成熟的野生型卵母细胞中,PARP-1蛋白与核斑点相关,减数分裂恢复后,在中期II阶段会发生显著的重新定位,朝向纺锤体极以及着丝粒周围的异染色质区域。值得注意的是,高比例的体内成熟的Parp-1(-/-)卵母细胞显示动粒相关蛋白BUB3未能募集到着丝粒区域,并且无法维持中期II停滞。减数分裂前期I中以持续的组蛋白H2AX磷酸化形式存在的染色质修饰缺陷以及中期II中姐妹染色单体黏连不足,使突变卵母细胞在从输卵管环境中取出后易过早进入后期II。我们的结果表明,PARP-1在雌性生殖系减数分裂关键阶段维持染色体稳定性方面发挥着关键作用。此外,在中期II阶段的卵母细胞中,PARP-1通过一种涉及将BUB3蛋白募集到着丝粒区域的机制来调节着丝粒的结构和功能。
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