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有丝分裂中着丝粒功能的适应。

Adaptations for centromere function in meiosis.

机构信息

Department of Molecular Biology and Institute for Genetics and Genomics in Geneva, Section of Biology, Faculty of Sciences, University of Geneva, 1211 Geneva, Switzerland.

出版信息

Essays Biochem. 2020 Sep 4;64(2):193-203. doi: 10.1042/EBC20190076.

Abstract

The aim of mitosis is to segregate duplicated chromosomes equally into daughter cells during cell division. Meiosis serves a similar purpose, but additionally separates homologous chromosomes to produce haploid gametes for sexual reproduction. Both mitosis and meiosis rely on centromeres for the segregation of chromosomes. Centromeres are the specialized regions of the chromosomes that are attached to microtubules during their segregation. In this review, we describe the adaptations and layers of regulation that are required for centromere function during meiosis, and their role in meiosis-specific processes such as homolog-pairing and recombination. Since female meiotic divisions are asymmetric, meiotic centromeres are hypothesized to evolve quickly in order to favor their own transmission to the offspring, resulting in the rapid evolution of many centromeric proteins. We discuss this observation using the example of the histone variant CENP-A, which marks the centromere and is essential for centromere function. Changes in both the size and the sequence of the CENP-A N-terminal tail have led to additional functions of the protein, which are likely related to its roles during meiosis. We highlight the importance of CENP-A in the inheritance of centromere identity, which is dependent on the stabilization, recycling, or re-establishment of CENP-A-containing chromatin during meiosis.

摘要

有丝分裂的目的是在细胞分裂过程中将复制的染色体平均分配到子细胞中。减数分裂也有类似的目的,但除此之外,它还会分离同源染色体,以产生用于有性繁殖的单倍体配子。有丝分裂和减数分裂都依赖着着丝粒来进行染色体的分离。着丝粒是染色体上的特殊区域,在分离过程中与微管相连。在这篇综述中,我们描述了减数分裂中着丝粒功能所需的适应和调控层次,以及它们在同源配对和重组等减数分裂特有的过程中的作用。由于雌性减数分裂是不对称的,因此减数分裂着丝粒被假设会快速进化,以有利于自身传递给后代,导致许多着丝粒蛋白的快速进化。我们使用组蛋白变体 CENP-A 的例子来讨论这一观察结果,CENP-A 标记着丝粒,是着丝粒功能所必需的。CENP-A N 端尾部的大小和序列的变化导致了该蛋白的额外功能,这些功能可能与其在减数分裂中的作用有关。我们强调了 CENP-A 在着丝粒身份遗传中的重要性,这取决于减数分裂过程中 CENP-A 包含的染色质的稳定、循环或重新建立。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/739f/7475650/314688c4a21e/ebc-64-ebc20190076-g1.jpg

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