首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >Genetic probing of homologous recombination and non-homologous end joining during meiotic prophase in irradiated mouse spermatocytes.
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Genetic probing of homologous recombination and non-homologous end joining during meiotic prophase in irradiated mouse spermatocytes.

机译:辐射重组小鼠精母细胞减数分裂前期同源重组和非同源末端连接的遗传探测。

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摘要

This study was designed to obtain a better insight into the relative contribution of homologous recombination (HR) and non-homologous end joining (NHEJ) to the repair of radiation-induced DNA double-strand breaks (DSBs) at first meiotic prophase. Early and late pachytene and early diplotene spermatocytes that had completed crossing over were sampled. We studied the kinetics of gamma-H2AX chromatin foci removal after irradiation of mice deficient for HR and mice deficient for NHEJ. Analyzing gamma-H2AX signals in unirradiated RAD54/RAD54B deficient spermatocytes indicated incomplete meiotic recombination repair due to the pronounced increase of gamma-H2AX foci in late prophase primary spermatocytes. In these mice, 8h after irradiation, early pachytene spermatocytes showed a reduction of the numbers of gamma-H2AX foci by 52% compared to 82% in the wild type, the difference being significant. However, after crossing over (in late pachytene and early diplotene), no effect of RAD54/RAD54B deficiency on the reduction of irradiation-induced foci was observed. In NHEJ deficient SCID mice, repair kinetics in early spermatocytes were similar to those in wild type mice. However, 1h after irradiation in late pachytene and early diplotene spermatocytes 1.7 times more foci were found than in wild type mice. This difference might be related to the absence of a DNA-PKcs dependent fast repair component in SCID mice. As subsequent repair is normal, HR likely is taking over. Taken together, the results obtained in RAD54/RAD54B deficient mice and in SCID mice indicate that DSB repair in early pachytene spermatocytes is mainly carried out through HR. In late spermatocytes (late pachytenes and early diplotenes) NHEJ is active. However, probably there is an interplay between these repair pathways and when in late spermatocytes the NHEJ pathway is compromised HR may take over.
机译:这项研究旨在更好地了解同源重组(HR)和非同源末端连接(NHEJ)对减数分裂前期辐射诱导的DNA双链断裂(DSB)修复的相对贡献。取样完成的早期和晚期粗线虫和早期双戊烯精细胞。我们研究了对HR缺陷小鼠和NHEJ缺陷小鼠照射后γ-H2AX染色质病灶去除的动力学。分析未辐照的RAD54 / RAD54B缺陷精细胞中的γ-H2AX信号表明,由于晚期前原代精子细胞中γ-H2AX灶明显增加,减数分裂重组修复不完全。在这些小鼠中,辐射后8小时,早期的粗线精原细胞显示,γ-H2AX病灶数量减少了52%,而野生型则为82%,差异非常显着。但是,经过交叉(晚粗线虫和早二线烯)后,未观察到RAD54 / RAD54B缺乏症对辐射诱导病灶减少的影响。在NHEJ缺陷型SCID小鼠中,早期精母细胞的修复动力学与野生型小鼠相似。然而,辐射后1h,晚粗线期和早戊二烯精细胞中的病灶比野生型小鼠多1.7倍。这种差异可能与SCID小鼠中不存在依赖DNA-PKcs的快速修复成分有关。由于后续维修很正常,因此人力资源很可能接管了工作。综上,在RAD54 / RAD54B缺陷小鼠和SCID小鼠中获得的结果表明,早期粗线精原细胞的DSB修复主要通过HR进行。 NHEJ在晚期精母细胞(后期粗骨膜和早期二烯烯)中活跃。但是,这些修复途径之间可能存在相互作用,并且在晚期精母细胞中NHEJ途径受损时,HR可能会接管。

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