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酿酒酵母单倍体减数分裂中重组的起始

Initiation of recombination in Saccharomyces cerevisiae haploid meiosis.

作者信息

De Massy B, Baudat F, Nicolas A

机构信息

Institut de Génétique et Microbiologie, Université Paris-Sud, Orsay, France.

出版信息

Proc Natl Acad Sci U S A. 1994 Dec 6;91(25):11929-33. doi: 10.1073/pnas.91.25.11929.

Abstract

In most eukaryotes during prophase I of meiosis, homologous chromosomes pair and recombine by coordinated molecular and cellular processes. To directly test whether or not the early steps of the initiation of recombination depend on the presence of a homologous chromosome, we have examined the formation and processing of DNA double-strand breaks (DSBs, the earliest physical landmark of recombination initiation) in various haploid Saccharomyces cerevisiae strains capable of entering meiosis. We find that DSBs occur in haploid meiosis, showing that the presence of a homolog is not required for DSB formation. DSBs occur at the same positions in haploid and diploid meioses. However, these two types of meiosis exhibit subtle differences with respect to the timing of formation and levels of DSBs. In haploid meiosis, a slower rate of DSB formation and a reduction in the frequency of DSB (at one of the three sites analyzed) were observed. These results might indicate that interactions between homologs play a role in the formation of meiotic DSBs. Furthermore, haploid strains exhibit a pronounced delay in the disappearance of meiotic DSBs compared to diploid strains, which suggests that sister chromatid interactions for DSB repair are inhibited in haploid meiosis.

摘要

在大多数真核生物减数分裂的前期I,同源染色体通过协调的分子和细胞过程进行配对和重组。为了直接测试重组起始的早期步骤是否依赖于同源染色体的存在,我们研究了各种能够进入减数分裂的单倍体酿酒酵母菌株中DNA双链断裂(DSB,重组起始的最早物理标志)的形成和处理。我们发现DSB在单倍体减数分裂中发生,这表明DSB形成不需要同源物的存在。DSB在单倍体和二倍体减数分裂的相同位置发生。然而,这两种减数分裂类型在DSB形成的时间和水平方面表现出细微差异。在单倍体减数分裂中,观察到DSB形成速率较慢,并且DSB频率降低(在所分析的三个位点之一)。这些结果可能表明同源物之间的相互作用在减数分裂DSB的形成中起作用。此外,与二倍体菌株相比,单倍体菌株在减数分裂DSB消失方面表现出明显延迟,这表明单倍体减数分裂中DSB修复的姐妹染色单体相互作用受到抑制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b831/45349/37ebda421c08/pnas01147-0172-a.jpg

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