首页> 美国卫生研究院文献>Oncotarget >Androgen receptor in Sertoli cells regulates DNA double-strand break repair and chromosomal synapsis of spermatocytes partially through intercellular EGF-EGFR signaling
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Androgen receptor in Sertoli cells regulates DNA double-strand break repair and chromosomal synapsis of spermatocytes partially through intercellular EGF-EGFR signaling

机译:睾丸支持细胞中的雄激素受体通过细胞间EGF-EGFR信号传导部分调节精子细胞的DNA双链断裂修复和染色体突触

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摘要

Spermatogenesis does not progress beyond the pachytene stages of meiosis in Sertoli cell-specific AR knockout (SCARKO) mice. However, further evidence of meiotic arrest and underlying paracrine signals in SCARKO testes is still lacking. We utilized co-immunostaining of meiotic surface spreads to examine the key events during meiotic prophase I. SCARKO spermatocytes exhibited a failure in chromosomal synapsis observed by SCP1/SCP3 double-staining and CREST foci quantification. In addition, DNA double-strand breaks (DSBs) were formed but were not repaired in the mutant spermatocytes, as revealed by γ-H2AX staining and DNA-dependent protein kinase (DNA-PK) activity examination. The later stages of DSB repair, such as the accumulation of the RAD51 strand exchange protein and the localization of mismatch repair protein MLH1, were correspondingly altered in SCARKO spermatocytes. Notably, the expression of factors that guide RAD51 loading onto sites of DSBs, including TEX15, BRCA1/2 and PALB2, was severely impaired when either AR was down-regulated or EGF was up-regulated. We observed that some ligands in the epidermal growth factor (EGF) family were over-expressed in SCARKO Sertoli cells and that some receptors in the EGF receptor (EGFR) family were ectopically activated in the mutant spermatocytes. When EGF-EGFR signaling was repressed to approximately normal by the specific inhibitor AG1478 in the cultured SCARKO testis tissues, the arrested meiosis was partially rescued, and functional haploid cells were generated. Based on these data, we propose that AR in Sertoli cells regulates DSB repair and chromosomal synapsis of spermatocytes partially through proper intercellular EGF-EGFR signaling.
机译:在Sertoli细胞特异性AR基因敲除(SCARKO)小鼠中,精子发生不会超过减数分裂的粗线期。但是,仍缺乏SCARKO睾丸中减数分裂停滞和潜在旁分泌信号的进一步证据。我们利用减数分裂表面扩散的共同免疫染色来检查减数分裂前期I期间的关键事件。通过SCP1 / SCP3双重染色和CREST病灶定量观察,SCARKO精母细胞在染色体突触中表现出缺陷。此外,通过γ-H2AX染色和DNA依赖性蛋白激酶(DNA-PK)活性检查发现,在突变的精母细胞中形成了DNA双链断裂(DSB),但未修复。 DSB修复的后期阶段,例如RAD51链交换蛋白的积累和错配修复蛋白MLH1的定位,在SCARKO精母细胞中相应发生了变化。值得注意的是,当AR被下调或EGF被上调时,指导RAD51加载到DSB的位点的因子(包括TEX15,BRCA1 / 2和PALB2)的表达受到严重损害。我们观察到表皮生长因子(EGF)家族中的一些配体在SCARKO Sertoli细胞中过表达,而EGF受体(EGFR)家族中的某些受体在突变的精母细胞中被异位激活。当特定的抑制剂AG1478在培养的SCARKO睾丸组织中将EGF-EGFR信号转导抑制至大致正常时,部分挽救了停滞的减数分裂,并生成了功能性单倍体细胞。基于这些数据,我们建议Sertoli细胞中的AR通过适当的细胞间EGF-EGFR信号传导部分调节DSB修复和精母细胞的染色体突触。

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