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对小鼠精母细胞中不同重组缺陷的监测显示,尽管在相同发育阶段被消除,但仍产生了不同的反应。

Surveillance of different recombination defects in mouse spermatocytes yields distinct responses despite elimination at an identical developmental stage.

作者信息

Barchi Marco, Mahadevaiah Shantha, Di Giacomo Monica, Baudat Frédéric, de Rooij Dirk G, Burgoyne Paul S, Jasin Maria, Keeney Scott

机构信息

Molecular Biology Program, Memorial Sloan-Kettering Cancer Center, New York, NY 10021, USA.

出版信息

Mol Cell Biol. 2005 Aug;25(16):7203-15. doi: 10.1128/MCB.25.16.7203-7215.2005.

Abstract

Fundamentally different recombination defects cause apoptosis of mouse spermatocytes at the same stage in development, stage IV of the seminiferous epithelium cycle, equivalent to mid-pachynema in normal males. To understand the cellular response(s) that triggers apoptosis, we examined markers of spermatocyte development in mice with different recombination defects. In Spo11(-)(/)(-) mutants, which lack the double-strand breaks (DSBs) that initiate recombination, spermatocytes express markers of early to mid-pachynema, forming chromatin domains that contain sex body-associated proteins but that rarely encompass the sex chromosomes. Dmc1(-)(/)(-) spermatocytes, impaired in DSB repair, appear to arrest at or about late zygonema. Epistasis analysis reveals that this earlier arrest is a response to unrepaired DSBs, and cytological analysis implicates the BRCT-containing checkpoint protein TOPBP1. Atm(-)(/)(-) spermatocytes show similarities to Dmc1(-)(/)(-) spermatocytes, suggesting that ATM promotes meiotic DSB repair. Msh5(-)(/)(-) mutants display a set of characteristics distinct from these other mutants. Thus, despite equivalent stages of spermatocyte elimination, different recombination-defective mutants manifest distinct responses, providing insight into surveillance mechanisms in male meiosis.

摘要

根本不同的重组缺陷会导致小鼠精子细胞在发育的同一阶段,即生精上皮周期的IV期发生凋亡,这相当于正常雄性动物的粗线期中期。为了了解触发凋亡的细胞反应,我们检测了具有不同重组缺陷的小鼠中精子细胞发育的标志物。在缺乏启动重组的双链断裂(DSB)的Spo11(-)(/)(-)突变体中,精子细胞表达早期到中期粗线期的标志物,形成包含性体相关蛋白但很少包含性染色体的染色质结构域。Dmc1(-)(/)(-)精子细胞在DSB修复方面受损,似乎停滞在合线期末期或接近合线期末期。上位性分析表明,这种较早的停滞是对未修复的DSB的一种反应,细胞学分析表明含有BRCT的检查点蛋白TOPBP1与之有关。Atm(-)(/)(-)精子细胞表现出与Dmc1(-)(/)(-)精子细胞相似之处,表明ATM促进减数分裂DSB修复。Msh5(-)(/)(-)突变体表现出一组与其他这些突变体不同的特征。因此,尽管精子细胞消除的阶段相同,但不同的重组缺陷突变体表现出不同的反应,这为深入了解雄性减数分裂中的监测机制提供了线索。

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本文引用的文献

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