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减数分裂DNA复制的进程受染色体间相互作用蛋白的调控,Spo11p起负调控作用,Rec8p起正调控作用。

Progression of meiotic DNA replication is modulated by interchromosomal interaction proteins, negatively by Spo11p and positively by Rec8p.

作者信息

Cha R S, Weiner B M, Keeney S, Dekker J, Kleckner N

机构信息

Department of Molecular Biology, Harvard University, Cambridge, Massachusetts 02138 USA.

出版信息

Genes Dev. 2000 Feb 15;14(4):493-503.

Abstract

Spo11p is a key mediator of interhomolog interactions during meiosis. Deletion of the SPO11 gene decreases the length of S phase by approximately 25%. Rec8p is a key coordinator of meiotic interhomolog and intersister interactions. Deletion of the REC8 gene increases S-phase length, by approximately 10% in wild-type and approximately 30% in a spo11Delta background. Thus, the progression of DNA replication is modulated by interchromosomal interaction proteins. The spo11-Y135F DSB (double strand break) catalysis-defective mutant is normal for S-phase modulation and DSB-independent homolog pairing but is defective for later events, formation of DSBs, and synaptonemal complexes. Thus, earlier and later functions of Spo11 are defined. We propose that meiotic S-phase progression is linked directly to development of specific chromosomal features required for meiotic interhomolog interactions and that this feedback process is built upon a more fundamental mechanism, common to all cell types, by which S-phase progression is coupled to development of nascent intersister connections and/or related aspects of chromosome morphogenesis. Roles for Rec8 and/or Spo11 in progression through other stages of meiosis are also revealed.

摘要

Spo11p是减数分裂过程中同源染色体相互作用的关键介导因子。SPO11基因的缺失使S期长度缩短约25%。Rec8p是减数分裂中同源染色体和姐妹染色单体相互作用的关键协调因子。REC8基因的缺失会增加S期长度,在野生型中增加约10%,在spo11Delta背景中增加约30%。因此,DNA复制的进程受染色体间相互作用蛋白的调节。spo11 - Y135F双链断裂(DSB)催化缺陷型突变体在S期调节和不依赖DSB的同源染色体配对方面是正常的,但在后期事件、DSB形成和联会复合体方面存在缺陷。因此,确定了Spo11的早期和后期功能。我们提出,减数分裂S期进程直接与减数分裂同源染色体相互作用所需的特定染色体特征的发展相关联,并且这种反馈过程建立在所有细胞类型共有的更基本机制之上,通过该机制,S期进程与新生姐妹染色单体连接的发展和/或染色体形态发生的相关方面相耦合。还揭示了Rec8和/或Spo11在减数分裂其他阶段进程中的作用。

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