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成年小鼠中条件性敲除 Hsp90α 导致的精子发生停滞。

Spermatogenesis arrest caused by conditional deletion of Hsp90α in adult mice.

机构信息

Laboratories for Immunochaperones, Research Center for Allergy and Immunology (RCAI), RIKEN Yokohama Institute , Yokohama 230-0045 , Japan.

出版信息

Biol Open. 2012 Oct 15;1(10):977-82. doi: 10.1242/bio.2012646. Epub 2012 Aug 17.

Abstract

It is controversial whether a functional androgen receptor (AR) on germ cells, including spermatogonia, is essential for their development into sperm and, thus, initiation and maintenance of spermatogenesis. It was recently shown that many spermatocytes underwent apoptosis in the testes of Hsp90α KO mice. We had generated Hsp90α KO mice independently and confirmed this phenotype. However, the important question of whether Hsp90α is required to maintain spermatogenesis in adult mice in which testicular maturation is already completed could not be addressed using these conventional KO mice. To answer this question, we generated a tamoxifen-inducible deletion mutant of Hsp90α and found that conditional deletion of Hsp90α in adult mice caused even more severe apoptosis in germ cells beyond the pachytene stage, leading to complete arrest of spermatogenesis and testicular atrophy. Importantly, immunohistochemical analysis revealed that AR expression in WT testis was more evident in spermatogonia than in spermatocytes, whereas its expression was aberrant and ectopic in Hsp90α KO testis, raising the possibility that an AR abnormality in primordial germ cells is involved in spermatogenesis arrest in the Hsp90α KO mice. Our results suggest that the AR, specifically chaperoned by Hsp90α in spermatogonia, is critical for maintenance of established spermatogenesis and for survival of spermatocytes in adult testis, in addition to setting the first wave of spermatogenesis before puberty.

摘要

关于生殖细胞(包括精原细胞)中功能性雄激素受体(AR)是否对其发育为精子以及启动和维持精子发生至关重要,目前仍存在争议。最近的研究表明,Hsp90α KO 小鼠的许多精母细胞在睾丸中发生凋亡。我们独立生成了 Hsp90α KO 小鼠,并证实了这一表型。然而,使用这些传统的 KO 小鼠,无法回答 Hsp90α 是否需要维持已完成睾丸成熟的成年小鼠中的精子发生的重要问题。为了解决这个问题,我们生成了一个可诱导型 Hsp90α 缺失突变体的小鼠,并发现 Hsp90α 在成年小鼠中的条件性缺失导致精母细胞发生更严重的凋亡,超过了粗线期,导致完全停止精子发生和睾丸萎缩。重要的是,免疫组织化学分析显示,WT 睾丸中的 AR 表达在精原细胞中比在精母细胞中更为明显,而在 Hsp90α KO 睾丸中其表达异常和异位,这提示原始生殖细胞中的 AR 异常可能参与了 Hsp90α KO 小鼠的精子发生阻滞。我们的研究结果表明,在精原细胞中由 Hsp90α 特别介导的 AR 对于维持已建立的精子发生以及成年睾丸中精母细胞的存活至关重要,此外还对青春期前的第一次精子发生起作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/093d/3507171/d34db93522c0/bio-01-10-977-f01.jpg

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