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双链DNA断裂以及重组和减数分裂中的基因功能。

Double-stranded DNA breaks and gene functions in recombination and meiosis.

作者信息

Li Wuxing, Ma Hong

机构信息

The Department of Biology, The Intercollege Graduate Degree Program in Plant Physiology, The Huck Institutes of the Life Sciences, The Pennsylvania State University, University Park, PA 16802, USA.

出版信息

Cell Res. 2006 May;16(5):402-12. doi: 10.1038/sj.cr.7310052.

Abstract

Meiotic prophase I is a long and complex phase. Homologous recombination is an important process that occurs between homologous chromosomes during meiotic prophase I. Formation of chiasmata, which hold homologous chromosomes together until the metaphase I to anaphase I transition, is critical for proper chromosome segregation. Recent studies have suggested that the SPO11 proteins have conserved functions in a number of organisms in generating sites of double-stranded DNA breaks (DSBs) that are thought to be the starting points of homologous recombination. Processing of these sites of DSBs requires the function of RecA homologs, such as RAD51, DMC1, and others, as suggested by mutant studies; thus the failure to repair these meiotic DSBs results in abnormal chromosomal alternations, leading to disrupted meiosis. Recent discoveries on the functions of these RecA homologs have improved the understanding of the mechanisms underlying meiotic homologous recombination.

摘要

减数分裂前期I是一个漫长而复杂的阶段。同源重组是减数分裂前期I同源染色体之间发生的一个重要过程。交叉的形成对于正确的染色体分离至关重要,交叉将同源染色体维系在一起直至从减数分裂中期I过渡到后期I。最近的研究表明,SPO11蛋白在许多生物体中具有保守功能,可产生双链DNA断裂(DSB)位点,这些位点被认为是同源重组的起始点。突变研究表明,这些DSB位点的处理需要RecA同源物(如RAD51、DMC1等)的功能;因此,无法修复这些减数分裂DSB会导致染色体异常变化,进而导致减数分裂紊乱。最近关于这些RecA同源物功能的发现增进了我们对减数分裂同源重组潜在机制的理解。

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