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睾丸 STAC3 通过增强线粒体膜电位和 StAR 加工来调节间质细胞类固醇生成。

Testicular STAC3 regulates Leydig cell steroidogenesis through potentiating mitochondrial membrane potential and StAR processing.

机构信息

Center of Reproductive Medicine, Children's Hospital of Shanxi and Women Health Center of Shanxi, No. 13 Xinmin North Street, Taiyuan, 030013, Shanxi Province, P.R. China.

出版信息

Cell Tissue Res. 2021 Apr;384(1):195-209. doi: 10.1007/s00441-020-03312-8. Epub 2021 Jan 6.

Abstract

SH3 and cysteine-rich protein 3 (STAC3), a small adapter protein originally identified as a core component of excitation-contraction coupling machinery, regulates the voltage-induced Ca release in skeletal muscle. However, the possibility of additional, as yet unknown, non-muscle effects of STAC3 cannot be ruled out. Herein, we provide the evidence for the expression and functional involvement of STAC3 in spermatogenesis. STAC3 expression was localized in the testicular interstitium of rodent and human testes. By using the cytotoxic drug ethylene dimethane sulfonate (EDS), STAC3 expression was observed to be decreased sharply in rat testis after selective withdrawal of Leydig cells (LCs), and reappeared immediately after LCs repopulation, indicating that testicular expression of STAC3 mainly stems from LCs. From a functional standpoint, in vivo lentiviral vector-mediated suppression of STAC3 resulted in a significant decrease in testosterone production, and thereafter caused impairment of male fertility by inducing oligozoospermia and asthenospermia. The indispensible involvement of STAC3 in testicular steroidogenesis was validated using the in vivo knockdown model with isolated primary LCs as well as in vitro experiments with primary LCs. By generating the TM3 cells, we further revealed that STAC3 depletion attenuated mitochondrial membrane potential and StAR processing in db-cAMP-stimulated LCs. Thus, the inhibitory effect of STAC3 deficiency on testicular steroidogenesis may be ascribed to a disturbed mitochondrial homeostasis. Collectively, the present results strongly suggest that STAC3 may function as a novel regulator linking mitochondrial homeostasis and testicular steroidogenesis in LCs. Our data underscore an unexpected reproductive facet of this muscle-derived factor.

摘要

SH3 和富含半胱氨酸蛋白 3(STAC3)是一种小型衔接蛋白,最初被鉴定为兴奋-收缩偶联机制的核心组成部分,调节骨骼肌中的电压诱导钙释放。然而,STAC3 可能具有其他未知的非肌肉作用,这一点不能排除。本文提供了 STAC3 在精子发生中表达和功能参与的证据。STAC3 的表达定位于啮齿动物和人类睾丸的睾丸间质中。使用细胞毒性药物乙烯二甲基亚砜(EDS),在选择性去除 Leydig 细胞(LCs)后,观察到大鼠睾丸中 STAC3 的表达急剧下降,而在 LCs 再增殖后立即重新出现,表明睾丸中 STAC3 的表达主要来自 LCs。从功能角度来看,体内慢病毒载体介导的 STAC3 抑制导致睾酮产生显著减少,进而通过诱导少精子症和弱精子症导致男性生育力受损。使用分离的原代 LCs 的体内敲低模型以及原代 LCs 的体外实验验证了 STAC3 在睾丸类固醇生成中的不可或缺作用。通过生成 TM3 细胞,我们进一步揭示了 STAC3 耗竭减弱了 db-cAMP 刺激的 LCs 中的线粒体膜电位和 StAR 加工。因此,STAC3 缺乏对睾丸类固醇生成的抑制作用可能归因于线粒体稳态的紊乱。总之,这些结果强烈表明 STAC3 可能作为一种将线粒体稳态与 LCs 中的睾丸类固醇生成联系起来的新型调节剂发挥作用。我们的数据强调了这种源自肌肉的因子在生殖方面的意外作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ce1/8016781/64b7789bcb20/441_2020_3312_Fig1_HTML.jpg

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