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雄性小鼠减数分裂前期I期间Spo11依赖性和非依赖性磷酸化H2AX焦点的表征

Characterization of Spo11-dependent and independent phospho-H2AX foci during meiotic prophase I in the male mouse.

作者信息

Chicheportiche Alexandra, Bernardino-Sgherri Jacqueline, de Massy Bernard, Dutrillaux Bernard

机构信息

Laboratory of Differentiation and Radiobiology of the Gonads, Unit of Gametogenesis and Genotoxicity, Unité Mixte de Recherche-S 566, Commissariat à l'Energie Atomique DSV/IRCM/SEGG/LDRG, F-92265 Fontenay aux Roses, France.

出版信息

J Cell Sci. 2007 May 15;120(Pt 10):1733-42. doi: 10.1242/jcs.004945. Epub 2007 Apr 24.

Abstract

Meiotic DNA double strand breaks (DSBs) are indicated at leptotene by the phosphorylated form of histone H2AX (gamma-H2AX). In contrast to previous studies, we identified on both zygotene and pachytene chromosomes two distinct types of gamma-H2AX foci: multiple small (S) foci located along autosomal synaptonemal complexes (SCs) and larger signals on chromatin loops (L-foci). The S-foci number gradually declined throughout pachytene, in parallel with the repair of DSBs monitored by repair proteins suggesting that S-foci mark DSB repair events. We validated this interpretation by showing the absence of S-foci in Spo11(-/-) spermatocytes. By contrast, the L-foci number was very low through pachytene. Based on the analysis of gamma-H2AX labeling after irradiation of spermatocytes, the formation of DSBs clearly induced L-foci formation. Upon DSB repair, these foci appear to be processed and lead to the above mentioned S-foci. The presence of L-foci in wild-type pachytene and diplotene could therefore reflect delayed or unregulated DSB repair events. Interestingly, their distribution was different in Spo11(+/-) spermatocytes compared with Spo11(+/+) spermatocytes, where DSB repair might be differently regulated as a response to homeostatic control of crossing-over. The presence of these L-foci in Spo11(-/-) spermatocytes raises the interesting possibility of yet uncharacterized alterations in DNA or chromosome structure in Spo11(-/-) cells.

摘要

减数分裂DNA双链断裂(DSB)在细线期通过组蛋白H2AX的磷酸化形式(γ-H2AX)得以指示。与先前的研究不同,我们在偶线期和粗线期染色体上均鉴定出两种不同类型的γ-H2AX焦点:沿着常染色体联会复合体(SC)分布的多个小(S)焦点以及染色质环上较大的信号(L-焦点)。在整个粗线期,S-焦点的数量逐渐减少,这与由修复蛋白监测的DSB修复过程同步,表明S-焦点标记了DSB修复事件。我们通过显示Spo11(-/-)精母细胞中不存在S-焦点来验证了这一解释。相比之下,在整个粗线期L-焦点的数量非常少。基于对精母细胞照射后γ-H2AX标记的分析,DSB的形成明显诱导了L-焦点的形成。在DSB修复后,这些焦点似乎被处理并导致上述S-焦点的出现。因此,野生型粗线期和双线期L-焦点的存在可能反映了延迟或未受调控的DSB修复事件。有趣的是,与Spo11(+/+)精母细胞相比,Spo11(+/-)精母细胞中它们的分布有所不同,在Spo11(+/+)精母细胞中,作为对交叉的稳态控制的反应,DSB修复可能受到不同的调控。Spo11(-/-)精母细胞中这些L-焦点的存在提出了一个有趣的可能性,即Spo11(-/-)细胞中DNA或染色体结构存在尚未表征的改变。

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