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睾丸特异性肌动蛋白样蛋白 7A(ACTL7A)是顶体下相关 F-肌动蛋白形成、顶体锚定和男性生育所必需的不可或缺的蛋白。

Testis-specific actin-like 7A (ACTL7A) is an indispensable protein for subacrosomal-associated F-actin formation, acrosomal anchoring, and male fertility.

机构信息

Interdisciplinary Faculty of Toxicology Program, Texas A&M University, College Station, TX, USA.

Department of Veterinary Physiology and Pharmacology, School of Veterinary Medicine and Biomedical Sciences, Texas A&M University, College Station, TX, USA.

出版信息

Mol Hum Reprod. 2023 Feb 28;29(3). doi: 10.1093/molehr/gaad005.

Abstract

Formation of the acrosome during spermiogenesis is an essential process for creating fertilization-competent sperm. Of the numerous aspects required for acrosome biogenesis, adherence of the acrosomal outer membrane to the nuclear surface is mediated by the subacrosomal perinuclear theca. However, the cellular dynamics and congruent functions pertaining to these acrosomal anchoring factors are not well understood despite many of them being implicated as potential causes for human male infertility. Actin-like 7A (ACTL7A) is one such factor for which deleterious polymorphisms have recently been shown to cause human male infertility. It is thought that acrosomal attachment is coordinated by cytoskeletal associations between the acrosome and nucleus via the acroplaxome. To further illuminate the mechanistic underpinnings of ACTL7A for essential acrosome associations, in this study, we investigated its dynamic localization in the developing germline, molecular associations with other cytoskeletal components, and the cellular consequences of ablation. Our intracellular localization data show ACTL7A to be dynamically present within the nucleus and subacrosomal space and later associated with postacrosomal regions of developing spermatids. Through the generation of an Actl7a knock-out mouse model, we consistently observed disruption of acrosomal biogenesis with abnormal migration of the acrosomal granule and peeling acrosomes during spermatid elongation. Significantly, we found a complete loss of subacrosomal filamentous actin (F-actin) structures in knock-out spermatids suggesting a regulatory role for subacrosomal F-actin. Considering our reported data together with existing literature, we propose a mechanistic model explaining the essential role of ACTL7A for acroplaxome-associated F-actin, acrosomal attachment integrity, and male fertility.

摘要

顶体形成是精子发生过程中产生具有受精能力精子的一个必要过程。在顶体生物发生所需的众多方面中,顶体外膜与核表面的黏附是由亚顶体周质核膜下区介导的。然而,尽管其中许多被认为是潜在的人类男性不育原因,但与这些顶体锚定因子相关的细胞动力学和协同功能仍未被很好地理解。肌动蛋白样 7A(ACTL7A)就是这样一个因素,最近的研究表明其有害多态性会导致人类男性不育。人们认为,顶体的附着是通过质膜下区与核之间的细胞骨架关联来协调的。为了进一步阐明 ACTL7A 对顶体结合至关重要的机制基础,在这项研究中,我们研究了它在发育中的生殖细胞中的动态定位、与其他细胞骨架成分的分子关联以及消融的细胞后果。我们的细胞内定位数据表明,ACTL7A 在核内和顶体下区动态存在,随后与发育中的精细胞的顶体后区相关联。通过生成 Actl7a 敲除小鼠模型,我们一致观察到顶体生物发生的破坏,顶体颗粒异常迁移和精细胞伸长过程中顶体剥落。值得注意的是,我们发现敲除的精细胞中完全丧失了亚顶体丝状肌动蛋白(F-actin)结构,这表明亚顶体 F-actin 具有调节作用。考虑到我们报告的数据和现有文献,我们提出了一个机制模型,解释了 ACTL7A 对质膜下区相关 F-actin、顶体附着完整性和男性生育力的重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3ed0/9976968/970ca7920b3b/gaad005f1.jpg

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