Xiao Xiang, Yang Wan-xi
The Sperm Laboratory, Institute of Cell Biology and Genetics, School of Life Sciences, Zhejiang University, Hangzhou 310058, China.
J Zhejiang Univ Sci B. 2007 Jul;8(7):498-506. doi: 10.1631/jzus.2007.B0498.
Actin can be found in all kinds of eukaryotic cells, maintaining their shapes and motilities, while its dynamics in sperm cells is understood less than their nonmuscle somatic cell counterparts. Spermatogenesis is a complicated process, resulting in the production of mature sperm from primordial germ cell. Significant structural and biochemical changes take place in the seminiferous epithelium of the adult testis during spermatogenesis. It was proved that all mammalian sperm contain actin, and that F-actin may play an important role during spermatogenesis, especially in nuclear shaping. Recently a new model for sperm head elongation based on the acrosome-acroplaxome-manchette complex has been proposed. In Drosophila, F-actin assembly is supposed to be very crucial during individualization. In this mini-review, we provide an overview of the structure, function, and regulation characteristics of actin cytoskeleton, and a summary of the current status of research of actin-based structure and movement is also provided, with emphasis on the role of actins in sperm head shaping during spermiogenesis and the cell junction dynamics in the testis. Research of the Sertoli ectoplasmic specialization is in the spotlight, which is a testis-specific actin-based junction very important for the movement of germ cells across the epithelium. Study of the molecular architecture and the regulating mechanism of the Sertoli ectoplasmic specialization has become an intriguing field. All this may lead to a new strategy for male infertility and, at the same time, a novel idea may result in devising much safer contraception with high efficiency. It is hoped that the advances listed in this review would give developmental and morphological researchers a favorable investigating outline and could help to enlarge the view of new strategies and models for actin dynamics during spermatogenesis.
肌动蛋白存在于各种真核细胞中,维持细胞的形状和运动能力,然而其在精子细胞中的动态变化比在非肌肉体细胞中的情况了解得更少。精子发生是一个复杂的过程,由原始生殖细胞产生成熟精子。在精子发生过程中,成年睾丸的生精上皮会发生显著的结构和生化变化。已证实所有哺乳动物的精子都含有肌动蛋白,并且F - 肌动蛋白可能在精子发生过程中发挥重要作用,尤其是在细胞核塑形方面。最近,基于顶体 - 顶体轴丝 - 环层复合物提出了一种精子头部伸长的新模型。在果蝇中,F - 肌动蛋白组装在精子个体化过程中被认为非常关键。在这篇小型综述中,我们概述了肌动蛋白细胞骨架的结构、功能和调节特性,并总结了基于肌动蛋白的结构和运动的研究现状,重点强调了肌动蛋白在精子形成过程中精子头部塑形以及睾丸中细胞连接动态变化中的作用。支持细胞外质特化的研究备受关注,它是一种睾丸特异性的基于肌动蛋白的连接,对生殖细胞穿过上皮的运动非常重要。对支持细胞外质特化的分子结构和调节机制的研究已成为一个有趣的领域。所有这些可能会为男性不育症带来新的治疗策略,同时,一个新的想法可能会导致设计出更安全、高效的避孕方法。希望本综述中列出的进展能为发育和形态学研究人员提供一个良好的研究框架,并有助于拓宽对精子发生过程中肌动蛋白动态变化的新策略和模型的视野。