Semaphorin 4C通过RHOA/ rock1介导的肌动蛋白细胞骨架重排调控卵巢甾体生成。

IF 3.6 2区 医学 Q2 DEVELOPMENTAL BIOLOGY Molecular human reproduction Pub Date : 2023-04-29 DOI:10.1093/molehr/gaad010
Dan Chen, Chuqing Wu, Simin Wei, Yican Guo, Meng Wu, Su Zhou, Fangfang Fu, Weicheng Tang, Liru Xue, Jinjin Zhang, Yan Li, Jun Dai, Yuanyuan Li, Shuangmei Ye, Shixuan Wang
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引用次数: 1

摘要

信号蛋白是一类进化上保守的形态发生分子,最初被发现与轴突引导有关。信号蛋白4C (Sema4C)是信号蛋白第四亚家族的成员,在器官发育、免疫调节、肿瘤生长和转移等方面发挥着多方面的重要作用。然而,Sema4C是否参与卵巢功能的调节尚不清楚。我们发现Sema4C在小鼠卵巢间质、卵泡和黄体中广泛表达,在中晚期生殖年龄小鼠卵巢中,Sema4C在不同部位表达降低。在卵巢鞘内给药重组腺相关病毒shrna抑制Sema4C可显著降低体内雌二醇、孕酮和睾酮水平。转录组测序分析显示卵巢类固醇生成和肌动蛋白细胞骨架相关通路发生变化。同样,在小鼠卵巢原代颗粒细胞或鞘间质细胞中,通过siRNA干扰敲低Sema4C可显著抑制卵巢类固醇生成,并导致肌动蛋白细胞骨架紊乱。重要的是,在Sema4C下调后,细胞骨架相关通路RHOA/ROCK1同时被抑制。此外,在siRNA干扰后使用ROCK1激动剂稳定了肌动蛋白细胞骨架,逆转了上述对类固醇激素的抑制作用。综上所述,Sema4C可能通过RHOA/ROCK1信号通路调控肌动蛋白细胞骨架,在卵巢类固醇生成中发挥重要作用。这些发现为确定参与女性生殖内分泌生理的主要因素提供了新的线索。
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Semaphorin 4C regulates ovarian steroidogenesis through RHOA/ROCK1-mediated actin cytoskeleton rearrangement.

Semaphorins are a family of evolutionarily conserved morphogenetic molecules that were initially found to be associated with axonal guidance. Semaphorin 4C (Sema4C), a member of the fourth subfamily of semaphorins, has been demonstrated to play multifaceted and important roles in organ development, immune regulation, tumor growth, and metastasis. However, it is completely unknown whether Sema4C is involved in the regulation of ovarian function. We found that Sema4C was widely expressed in the stroma, follicles, and corpus luteum of mouse ovaries, and its expression was decreased at distinct foci in ovaries of mice of mid-to-advanced reproductive age. Inhibition of Sema4C by the ovarian intrabursal administration of recombinant adeno-associated virus-shRNA significantly reduced oestradiol, progesterone, and testosterone levels in vivo. Transcriptome sequencing analysis showed changes in pathways related to ovarian steroidogenesis and the actin cytoskeleton. Similarly, knockdown of Sema4C by siRNA interference in mouse primary ovarian granulosa cells or thecal interstitial cells significantly suppressed ovarian steroidogenesis and led to actin cytoskeleton disorganization. Importantly, the cytoskeleton-related pathway RHOA/ROCK1 was simultaneously inhibited after the downregulation of Sema4C. Furthermore, treatment with a ROCK1 agonist after siRNA interference stabilized the actin cytoskeleton and reversed the inhibitory effect on steroid hormones described above. In conclusion, Sema4C may play an important role in ovarian steroidogenesis through regulation of the actin cytoskeleton via the RHOA/ROCK1 signaling pathway. These findings shed new light on the identification of dominant factors involved in the endocrine physiology of female reproduction.

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来源期刊
Molecular human reproduction
Molecular human reproduction 生物-发育生物学
CiteScore
8.30
自引率
0.00%
发文量
37
审稿时长
6-12 weeks
期刊介绍: MHR publishes original research reports, commentaries and reviews on topics in the basic science of reproduction, including: reproductive tract physiology and pathology; gonad function and gametogenesis; fertilization; embryo development; implantation; and pregnancy and parturition. Irrespective of the study subject, research papers should have a mechanistic aspect.
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