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Roles of histone H3.5 in human spermatogenesis and spermatogenic disorders

机译:组蛋白H3.5在人精子发生和精子发生障碍中的作用

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Summary Histone H3.5 (H3.5) is a newly identified histone variant highly expressed in the human testis. We have reported the crystal structure, instability of the H3.5 nucleosome and accumulation around transcription start sites, mainly in primary spermatocytes, but its role in human spermatogenesis remains poorly understood. Testicular biopsy specimens from 30 men (mean age: 35?years) with non‐obstructive azoospermia ( NOA ) who underwent microdissection testicular sperm extraction and 23 men with obstructive azoospermia ( OA ) were included. An H3.5‐specific mouse monoclonal antibody recognizing an H3.5‐specific synthetic peptide was generated, and immunohistological staining for H3.5 and proliferating cell nuclear antigen ( PCNA ) was performed on Bouin's solution‐fixed sections. Expression and localization of H3.5 were compared with patient background, germinal stage, and PCNA expression. In testes of patients with normal spermatogenesis, differentially expressed H3.5 was specifically localized in either spermatogonia or preleptotene/leptotene‐stage primary spermatocytes, especially during germinal stages VI–X. In NOA testes, mRNA expression of H3.5 ( H3F3C ) was significantly reduced compared with other H3 histone family members, and expression of H3.5 was significantly lower than that in OA . Additionally, the number of H3.5‐positive germ cells was higher in hypospermatogenesis or late maturation arrest than in early maturation arrest in NOA testes ( p ??0.01). A significant positive correlation was observed between H3.5 and PCNA expression ( p ??0.05) but not TUNEL ‐positive cells, and expression of H3.5 was enhanced after hCG ‐based salvage hormonal therapy. Different from other testis‐specific histones, which are often expressed during the histone‐to‐protamine transition during meiosis, H3.5 was expressed mainly in immature germ cells. H3.5 may play roles in DNA synthesis, but not apoptosis, and its expression is regulated by gonadotropins, indicating that such epigenetic regulations are important in normal spermatogenesis and spermatogenic disorders.
机译:发明内容组蛋白H3.5(H3.5)是人类睾丸高度表达的新鉴定的组蛋白变体。我们已经报道了晶体结构,H3.5的不稳定性,转录起始位点周围的核心和积累,主要是在原发性精子胶质细胞中,但其在人类精子发生中的作用仍然很糟糕。包括来自30名男性的睾丸活检标本(平均年龄:35?年),其中包括非阻塞性血吸虫(NOA)接受微放映睾丸精子提取和23名带有阻塞性杂草植物(OA)的人。产生H3.5特异性小鼠单克隆抗体识别H3.5特异性合成肽,并在Bouin的溶液固定部分进行H3.5和增殖细胞核抗原(PCNA)的免疫组织染色。将H3.5的表达和定位与患者背景,生发阶段和PCNA表达进行比较。在正常精子发生患者的睾丸中,差异表达的H3.5特异性地局限于精子寄生虫或前肽/醇阶段初级精子细胞,尤其是在生发阶段VI-X期间。在NOA睾丸中,与其他H3组蛋白家族成员相比,H3.5(H3F3C)的mRNA表达显着降低,并且H3.5的表达明显低于OA中的H3.5。另外,H3.5阳性生殖细胞的数量较高,低疗法或晚期成熟捕获高于NOA睾丸的早熟停滞(P?& 0.01)。在H3.5和PCNA表达(P≤≤0.05)之间观察到显着的阳性相关性,但在基于HCG的抢购激素疗法后提高了H3.5的表达。与其他睾丸特异性的组蛋白不同,其通常在MeIsosis期间的组蛋白与protamine转变期间表达,H3.5主要表达在未成熟的胚芽细胞中。 H3.5可以在DNA合成中发挥作用,但不凋亡,其表达由促性腺激素调节,表明这种表观遗传法规在正常精子发生和精子发生障碍中是重要的。

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