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秀丽隐杆线虫生殖细胞在减数分裂前期进程中,双链断裂修复的不同模式之间进行转换。

C. elegans germ cells switch between distinct modes of double-strand break repair during meiotic prophase progression.

作者信息

Hayashi Michiko, Chin Gregory M, Villeneuve Anne M

机构信息

Department of Developmental Biology, Stanford University School of Medicine, Stanford, California, United States of America.

出版信息

PLoS Genet. 2007 Nov;3(11):e191. doi: 10.1371/journal.pgen.0030191.

Abstract

Chromosome inheritance during sexual reproduction relies on deliberate induction of double-strand DNA breaks (DSBs) and repair of a subset of these breaks as interhomolog crossovers (COs). Here we provide a direct demonstration, based on our analysis of rad-50 mutants, that the meiotic program in Caenorhabditis elegans involves both acquisition and loss of a specialized mode of double-strand break repair (DSBR). In premeiotic germ cells, RAD-50 is not required to load strand-exchange protein RAD-51 at sites of spontaneous or ionizing radiation (IR)-induced DSBs. A specialized meiotic DSBR mode is engaged at the onset of meiotic prophase, coincident with assembly of meiotic chromosome axis structures. This meiotic DSBR mode is characterized both by dependence on RAD-50 for rapid accumulation of RAD-51 at DSB sites and by competence for converting DSBs into interhomolog COs. At the mid-pachytene to late pachytene transition, germ cells undergo an abrupt release from the meiotic DSBR mode, characterized by reversion to RAD-50-independent loading of RAD-51 and loss of competence to convert DSBs into interhomolog COs. This transition in DSBR mode is dependent on MAP kinase-triggered prophase progression and coincides temporally with a major remodeling of chromosome architecture. We propose that at least two developmentally programmed switches in DSBR mode, likely conferred by changes in chromosome architecture, operate in the C. elegans germ line to allow formation of meiotic crossovers without jeopardizing genomic integrity. Our data further suggest that meiotic cohesin component REC-8 may play a role in limiting the activity of SPO-11 in generating meiotic DSBs and that RAD-50 may function in counteracting this inhibition.

摘要

有性生殖过程中的染色体遗传依赖于双链DNA断裂(DSB)的有意诱导以及这些断裂中的一部分作为同源染色体交叉(CO)的修复。在此,基于我们对rad-50突变体的分析,我们提供了直接证据,表明秀丽隐杆线虫的减数分裂程序涉及双链断裂修复(DSBR)特殊模式的获得和丧失。在减数分裂前的生殖细胞中,在自发或电离辐射(IR)诱导的DSB位点加载链交换蛋白RAD-51不需要RAD-50。一种特殊的减数分裂DSBR模式在减数分裂前期开始时启动,与减数分裂染色体轴结构的组装同时发生。这种减数分裂DSBR模式的特点是在DSB位点上依赖RAD-50使RAD-51快速积累,并且有能力将DSB转化为同源染色体CO。在粗线期中段到后期粗线期的转变过程中,生殖细胞突然从减数分裂DSBR模式中释放出来,其特征是恢复到不依赖RAD-50加载RAD-51,并且丧失了将DSB转化为同源染色体CO的能力。DSBR模式的这种转变依赖于丝裂原活化蛋白激酶触发的前期进程,并且在时间上与染色体结构的重大重塑相吻合。我们提出,至少有两个由染色体结构变化可能赋予的、在发育程序中设定的DSBR模式转换,在秀丽隐杆线虫生殖系中起作用,以允许减数分裂交叉的形成而不危及基因组完整性。我们的数据进一步表明,减数分裂黏连蛋白组分REC-8可能在限制SPO-11产生减数分裂DSB的活性方面发挥作用,并且RAD-50可能在抵消这种抑制方面发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8393/2098787/0cee9a1d331c/pgen.0030191.g001.jpg

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