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Spo11和Rad50在依赖复制的早期减数分裂中的需求

Replication-dependent early meiotic requirement for Spo11 and Rad50.

作者信息

Merino S T, Cummings W J, Acharya S N, Zolan M E

机构信息

Department of Biology, Indiana University, Bloomington, IN 47405, USA.

出版信息

Proc Natl Acad Sci U S A. 2000 Sep 12;97(19):10477-82. doi: 10.1073/pnas.190346097.

Abstract

Spo11 and the Rad50-Mre11 complex have been indirectly implicated in processes associated with DNA replication. These proteins also have been shown to have early meiotic roles essential for the formation of a programmed DNA double-strand break known in Saccharomyces cerevisiae to initiate meiotic recombination. In both S. cerevisiae and the basidiomycete Coprinus cinereus, spo11 and rad50 mutants are defective in chromosome synapsis during meiosis. Here we demonstrate that a partial restoration of synapsis occurs in C. cinereus spo11 and rad50 mutants if premeiotic DNA replication is prevented. Double mutants were constructed with spo11-1 or rad50-4 and another mutant, spo22-1, which does not undergo premeiotic DNA replication. In both cases, we observed an increase in the percentage of nuclei containing synaptonemal complex (SC) structures, with concomitant decreases in the percentage of nuclei containing axial elements (AE) only or no structures. Both types of double mutants demonstrated significant increases in the average numbers of AE and SC, although SC-containing nuclei did not on average contain more AE than did nuclei showing no synapsis. Our results show that Spo11-induced recombination is not absolutely required for synapsis in C. cinereus, and that the early meiotic role of both Spo11 and Rad50 in SC formation partially depends on premeiotic S phase. This dependency likely reflects either a requirement for these proteins imposed by the premeiotic replication process itself or a requirement for these proteins in synapsis when a sister chromatid (the outcome of DNA replication) is present.

摘要

Spo11以及Rad50-Mre11复合物已间接参与到与DNA复制相关的过程中。这些蛋白质还被证明在减数分裂早期具有重要作用,对于酿酒酵母中已知的启动减数分裂重组的程序性DNA双链断裂的形成至关重要。在酿酒酵母和担子菌灰盖鬼伞中,spo11和rad50突变体在减数分裂期间的染色体联会方面存在缺陷。在此我们证明,如果阻止减数分裂前的DNA复制,灰盖鬼伞spo11和rad50突变体中会出现部分联会恢复。构建了spo11-1或rad50-4与另一个不进行减数分裂前DNA复制的突变体spo22-1的双突变体。在这两种情况下,我们都观察到含有联会复合体(SC)结构的细胞核百分比增加,同时仅含有轴向元件(AE)或没有结构的细胞核百分比降低。两种类型的双突变体在AE和SC的平均数上都有显著增加,尽管含有SC的细胞核平均而言并不比未发生联会的细胞核含有更多的AE。我们的结果表明,Spo11诱导的重组对于灰盖鬼伞的联会并非绝对必需,并且Spo11和Rad50在SC形成中的减数分裂早期作用部分取决于减数分裂前的S期。这种依赖性可能反映了减数分裂前复制过程本身对这些蛋白质的需求,或者当存在姐妹染色单体(DNA复制的产物)时联会对这些蛋白质的需求。

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