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首页> 外文期刊>The Journal of Reproduction and Development >Roles of cohesin and condensin in chromosome dynamics during mammalian meiosis.
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Roles of cohesin and condensin in chromosome dynamics during mammalian meiosis.

机译:凝聚素和凝聚素在哺乳动物减数分裂过程中染色体动态中的作用。

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摘要

Meiosis is a key step for sexual reproduction in which chromosome number is halved by two successive meiotic divisions after a single round of DNA replication. In the first meiotic division (meiosis I), homologous chromosomes pair, synapse, and recombine with their partners in prophase I. As a result, homologous chromosomes are physically connected until metaphase I and then segregated from each other at the onset of anaphase I. In the subsequent second meiotic division (meiosis II), sister chromatids are segregated. Chromosomal abnormality arising during meiosis is one of the major causes of birth defects and congenital disorders in mammals including human and domestic animals. Hence understanding of the mechanism underlying these unique chromosome behavior in meiosis is of great importance. This review focuses on the roles of cohesin and condensin, and their regulation in chromosome dynamics during mammalian meiosis.
机译:减数分裂是有性生殖的关键步骤,在此过程中,单轮DNA复制后,染色体数目被连续的两次减数分裂分裂了一半。在第一个减数分裂分裂(减数分裂I)中,同源染色体在前期I中与其伴侣配对,突触并重组。结果,同源染色体物理连接直到中期I,然后在后期I发生时彼此分离。在随后的第二个减数分裂分裂(减数分裂II)中,姐妹染色单体分离。减数分裂过程中产生的染色体异常是包括人类和家畜在内的哺乳动物出生缺陷和先天性疾病的主要原因之一。因此,了解减数分裂中这些独特染色体行为的潜在机制非常重要。这篇综述着重于cohesin和condensin的作用,以及它们在哺乳动物减数分裂过程中在染色体动力学中的调控。

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