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Geminin deficiency causes a Chk1-dependent G2 arrest in Xenopus

机译:Geminin缺乏症导致非洲爪蟾的Chk1依赖G2逮捕。

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Geminin is an unstable inhibitor of DNA replication that gets destroyed at the metaphase/anaphase transition. The biological function of geminin has been difficult to determine because it is not homologous to a characterized protein and has pleiotropic effects when overexpressed. Geminin is thought to prevent a second round of initiation during S or G2 phase. In some assays, geminin induces uncommitted embryonic cells to differentiate as neurons. In this study, geminin was eliminated from developing Xenopus embryos by using antisense techniques. Geminin-deficient embryos show a novel and unusual phenotype: they complete the early cleavage divisions normally but arrest in G2 phase immediately after the midblastula transition. The arrest requires Chk1, the effector kinase of the DNA replication/DNA damage checkpoint pathway. The results indicate that geminin has an essential function and that loss of this function prevents entry into mitosis by a Chk1-dependent mechanism. Geminin may be required to maintain the structural integrity of the genome or it may directly down-regulate Chk1 activity. The data also show that during the embryonic cell cycles, rereplication is almost entirely prevented by gemininin-dependent mechanisms. [References: 38]
机译:Geminin是不稳定的DNA复制抑制剂,可在中期/后期转变时被破坏。 geminin的生物学功能难以确定,因为它与特征蛋白不同源,并且在过表达时具有多效性。 Geminin被认为可以防止在S或G2阶段的第二轮引发。在某些测定中,双倍蛋白可诱导未定型的胚胎细胞分化为神经元。在这项研究中,通过使用反义技术从发育中的非洲爪蟾胚胎中消除了双胚蛋白。缺乏胚蛋白的胚胎表现出新奇且异常的表型:它们正常完成早期分裂分裂,但在中胚层过渡后立即停在G2期。逮捕需要Chk1,DNA复制/ DNA损伤检查点途径的效应激酶。结果表明,geminin具有必不可少的功能,并且该功能的丧失阻止了Chk1依赖性机制进入有丝分裂。可能需要Geminin来维持基因组的结构完整性,或者可能直接下调Chk1活性。数据还表明,在胚胎细胞周期中,geminin依赖性机制几乎完全阻止了复制。 [参考:38]

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