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酿酒酵母减数分裂中分子事件的时间安排:稳定的异源双链DNA在减数分裂前期后期形成。

Timing of molecular events in meiosis in Saccharomyces cerevisiae: stable heteroduplex DNA is formed late in meiotic prophase.

作者信息

Goyon C, Lichten M

机构信息

Laboratory of Biochemistry, National Cancer Institute, National Institutes of Health, Bethesda, Maryland 20892.

出版信息

Mol Cell Biol. 1993 Jan;13(1):373-82. doi: 10.1128/mcb.13.1.373-382.1993.

Abstract

To better understand the means by which chromosomes pair and recombine during meiosis, we have determined the time of appearance of heteroduplex DNA relative to the times of appearance of double-strand DNA breaks and of mature recombined molecules. Site-specific double-strand breaks appeared early in meiosis and were formed and repaired with a timing consistent with a role for breaks as initiators of recombination. Heteroduplex-containing molecules appeared about 1 h after double-strand breaks and were followed shortly by crossover products and the first meiotic nuclear division. We conclude that parental chromosomes are stably joined in heteroduplex-containing structures late in meiotic prophase and that these structures are rapidly resolved to yield mature crossover products. If the chromosome pairing and synapsis observed earlier in meiotic prophase is mediated by formation of biparental DNA structures, these structures most likely either contain regions of non-Watson-Crick base pairs or contain regions of heteroduplex DNA that either are very short or dissociate during DNA purification. Two loci were examined in this study: the normal ARG4 locus, and an artificial locus consisting of an arg4-containing plasmid inserted at MAT. Remarkably, sequences in the ARG4 promoter that suffered double-strand cleavage at the normal ARG4 locus were not cut at significant levels when present at MAT::arg4. These results indicate that the formation of double-strand breaks during meiosis does not simply involve the specific recognition and cleavage of a short nucleotide sequence.

摘要

为了更好地理解减数分裂过程中染色体配对和重组的方式,我们确定了异源双链DNA出现的时间相对于双链DNA断裂和成熟重组分子出现时间的关系。位点特异性双链断裂在减数分裂早期出现,其形成和修复的时间与断裂作为重组起始物的作用一致。含有异源双链的分子在双链断裂后约1小时出现,随后不久出现交叉产物和第一次减数分裂核分裂。我们得出结论,亲本染色体在减数分裂前期后期稳定地连接在含有异源双链的结构中,并且这些结构迅速解析以产生成熟的交叉产物。如果在减数分裂前期早期观察到的染色体配对和联会是由双亲DNA结构的形成介导的,那么这些结构很可能要么包含非沃森-克里克碱基对区域,要么包含非常短或在DNA纯化过程中解离的异源双链DNA区域。本研究中检测了两个位点:正常的ARG4位点,以及一个由插入MAT的含arg4质粒组成的人工位点。值得注意的是,在正常ARG4位点发生双链切割的ARG4启动子序列,当存在于MAT::arg4时,没有被显著切割。这些结果表明,减数分裂过程中双链断裂的形成并不简单地涉及短核苷酸序列的特异性识别和切割。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/933d/358917/97f1f4b29383/molcellb00013-0402-a.jpg

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