精子发生过程中细胞极性有影响吗?

Ying Gao, C. Cheng
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引用次数: 8

摘要

细胞极性对发育至关重要,因为由3个极性蛋白模块(或复合物)赋予的顶基极性在胚胎发生过程中是必不可少的,即Par(分裂缺陷)-,CRB(碎屑)-和基于scribble的极性蛋白模块。虽然这些蛋白复合物及其组成蛋白已经在果蝇和线虫以及其他哺乳动物组织和/或细胞中进行了广泛的研究,但它们在睾丸中的存在和生理意义仍然未被探索,直到2008年发表了第一篇关于par蛋白的论文。从那时起,人们开始研究睾丸中的Par-、Scribble-和crb蛋白复合物及其组成蛋白。已知这些蛋白在精系上皮中赋予支持细胞和精子细胞极性,它们也是支持细胞-细胞界面靠近基底膜的紧密连接(TJ)和基外质特化(ES)的组成部分,后者反过来构成血睾丸屏障(BTB)。这些蛋白也存在于支持细胞-精子细胞界面的顶端ES中。因此,这些极性蛋白也通过其对基于肌动蛋白的细胞骨架功能的作用,在调节睾丸内的支持细胞和精子粘附方面发挥重要作用。最近的研究表明,这些极性蛋白对BTB完整性具有拮抗作用,其中基于Par6-和crb3的极性复合物促进了Sertoli细胞tj -通透性屏障的完整性,而基于scribble的复合物促进了Sertoli tj -屏障功能的重组/重塑。在此,我们仔细评估了这些发现,并提供了一个假设模型,在这些极性蛋白在其他上皮细胞中的功能背景下,它们在睾丸中的作用,以便在未来的研究中设计更好的实验来探索它们在精子发生中的意义。
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Does cell polarity matter during spermatogenesis?
ABSTRACT Cell polarity is crucial to development since apico-basal polarity conferred by the 3 polarity protein modules (or complexes) is essential during embryogenesis, namely the Par (partition defective)-, the CRB (Crumbs)-, and the Scribble-based polarity protein modules. While these protein complexes and their component proteins have been extensively studied in Drosophila and C. elegans and also other mammalian tissues and/or cells, their presence and physiological significance in the testis remain unexplored until the first paper on the Par-based protein published in 2008. Since then, the Par-, the Scribble- and the CRB-based protein complexes and their component proteins in the testis have been studied. These proteins are known to confer Sertoli and spermatid polarity in the seminiferous epithelium, and they are also integrated components of the tight junction (TJ) and the basal ectoplasmic specialization (ES) at the Sertoli cell-cell interface near the basement membrane, which in turn constitute the blood-testis barrier (BTB). These proteins are also found at the apical ES at the Sertoli-spermatid interface. Thus, these polarity proteins also play a significant role in regulating Sertoli and spermatid adhesion in the testis through their actions on actin-based cytoskeletal function. Recent studies have shown that these polarity proteins are having antagonistic effects on the BTB integrity in which the Par6- and CRB3-based polarity complexes promotes the integrity of the Sertoli cell TJ-permeability barrier, whereas the Scribble-based complex promotes restructuring/remodeling of the Sertoli TJ-barrier function. Herein, we carefully evaluate these findings and provide a hypothetic model regarding their role in the testis in the context of the functions of these polarity proteins in other epithelia, so that better experiments can be designed in future studies to explore their significance in spermatogenesis.
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