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重组酶 RAD51 和 DMC1 的功能保守和分化的最新进展。

Recent advances in functional conservation and divergence of recombinase RAD51 and DMC1.

机构信息

Institute of Plant Science, School of Life Sciences, Fudan University, Shanghai 200438, China.

College of Life Science and Technology, Huazhong Agricultural University, Wuhan 430070, China.

出版信息

Yi Chuan. 2022 May 20;44(5):398-413. doi: 10.16288/j.yczz.22-016.

Abstract

Meiosis is a specialized cell division that occurs in reproductive cells during sexual reproduction. It contains once DNA replication following nucleus division twice, thus producing haploid gametes. Fusion of male and female gametes restores genome to the diploid level, which not only ensures the genome stability between generations during sexual reproduction, but also leads to genetic diversity among offspring. Meiosis homologous recombination (HR) is one of the crucial events during meiotic prophase I, and it not only ensures the subsequently faithful segregation of homologous chromosomes (homologs), but also exchanges genetic information between homologs with greatly increasing the genetic diversity of progeny. RAD51 (RADiation sensitive 51) and DMC1 (disruption Meiotic cDNA 1) are essential recombinases for the HR process, and have certain commonalities and differences. In this review, we summarize and compare the conserved and differentiated features of RAD51 and DMC1 in terms of origin, evolution, structure, and function, we also provide an outlook on future research directions to further understand and study the molecular mechanisms in regulation of meiotic recombination.

摘要

减数分裂是一种在有性生殖过程中发生在生殖细胞中的特殊细胞分裂。它包含一次细胞核分裂后的 DNA 复制两次,从而产生单倍体配子。雌雄配子的融合将基因组恢复到二倍体水平,这不仅确保了有性生殖过程中世代间的基因组稳定性,而且导致了后代的遗传多样性。减数分裂同源重组(HR)是减数分裂前期 I 中的关键事件之一,它不仅确保了同源染色体(同源物)随后的忠实分离,而且还通过大大增加后代的遗传多样性,在同源物之间交换遗传信息。RAD51(辐射敏感 51)和 DMC1(破坏减数分裂 cDNA 1)是 HR 过程所必需的重组酶,它们在起源、进化、结构和功能上具有一定的共性和差异。在这篇综述中,我们总结并比较了 RAD51 和 DMC1 在起源、进化、结构和功能上的保守和分化特征,还对未来的研究方向进行了展望,以进一步了解和研究调节减数分裂重组的分子机制。

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