局灶黏附激酶是f -肌动蛋白动力学的调节因子:来自睾丸研究的新见解。

Spermatogenesis Pub Date : 2013-07-01 Epub Date: 2013-06-21 DOI:10.4161/spmg.25385
Stephen Yt Li, Dolores D Mruk, C Yan Cheng
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引用次数: 31

摘要

在精子发生过程中,精原细胞(2n,二倍体)经过一系列有丝分裂和分化成为精母细胞,进入减数分裂I,然后进入减数分裂II形成圆形精母细胞(1n,单倍体),然后通过精子发生分化为精子(1n,单倍体)。这些事件发生在精小管上皮,包括在支持细胞-支持细胞和支持细胞-生殖细胞界面的广泛连接重组,以允许发育中的生殖细胞通过上皮运输。虽然已经研究了这些细胞-细胞连接的结构方面,但尚未探索支配这些事件的潜在机制。早期的研究表明,一种被称为局灶黏着激酶(FAK)的非受体蛋白酪氨酸激酶可能是这些事件的调节剂,因为它在睾丸特异性锚定连接处的各种磷酸化/激活形式的阶段特异性和时空特异性表达,以及它与肌动蛋白调节蛋白的关联。最近的研究表明,FAK,特别是其两种活化磷酸化形式p-FAK-Tyr407和p-FAK-Tyr397,在调节血睾丸屏障(BTB)的支持细胞-细胞界面(称为基底外质特化(基底ES))的连接重组中是至关重要的调节剂,在精子发生过程中,通过其对ES的丝状(F)-肌动蛋白组织的影响,调节支持细胞-精子界面(称为顶端ES)的连接重组。在此,我们总结并批判性地评估了FAK在调节BTB和根尖ES动力学中的生理意义,通过控制ES中肌动蛋白丝从“捆绑”到“去捆绑/分支”的转换,反之亦然。我们还根据该领域的最新发现提供了FAK在调节这些事件中的作用的分子模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Focal adhesion kinase is a regulator of F-actin dynamics: New insights from studies in the testis.

During spermatogenesis, spermatogonia (2n, diploid) undergo a series of mitotic divisions as well as differentiation to become spermatocytes, which enter meiosis I to be followed by meiosis II to form round spermatids (1n, haploid), and then differentiate into spermatozoa (1n, haploid) via spermiogenesis. These events take place in the epithelium of the seminiferous tubule, involving extensive junction restructuring at the Sertoli-Sertoli and Sertoli-germ cell interface to allow the transport of developing germ cells across the epithelium. Although structural aspects of these cell-cell junctions have been studied, the underlying mechanism(s) that governs these events has yet to be explored. Earlier studies have shown that a non-receptor protein tyrosine kinase known as focal adhesion kinase (FAK) is a likely regulator of these events due to the stage-specific and spatiotemporal expression of its various phosphorylated/activated forms at the testis-specific anchoring junctions in the testis, as well as its association with actin regulatory proteins. Recent studies have shown that FAK, in particular its two activated phosphorylated forms p-FAK-Tyr407 and p-FAK-Tyr397, are crucial regulators in modulating junction restructuring at the Sertoli cell-cell interface at the blood-testis barrier (BTB) known as the basal ectoplasmic specialization (basal ES), as well as at the Sertoli-spermatid interface called apical ES during spermiogenesis via its effects on the filamentous (F)-actin organization at the ES. We herein summarize and critically evaluate the current knowledge regarding the physiological significance of FAK in regulating BTB and apical ES dynamics by governing the conversion of actin filaments at the ES from a "bundled" to a "de-bundled/branched" configuration and vice versa. We also provide a molecular model on the role of FAK in regulating these events based on the latest findings in the field.

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Computational characterization and integrative analysis of proteins involved in spermatogenesis Genetics of mammalian meiosis Roles of membrane and nuclear estrogen receptors in spermatogenesis Androgen regulation of spermatogenesis Cytoskeletons (F-actin) and spermatogenesis
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