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Regulation of junction dynamics in the testis--transcriptional and post-translational regulations of cell junction proteins.

机译:睾丸中连接动力学的调节-细胞连接蛋白的转录和翻译后调节。

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摘要

Cell junctions are the sites at which cells attach to the neighboring cells. They do not only maintain tissue integrity, their turnover also plays a crucial role in cell development and morphogenesis. In the testis, tight junctions and adherens junctions are dynamically remodeled to allow the movement of post-meiotic germ cells across the seminiferous epithelium and the timely release of spermatids into the tubular lumen. There is growing evidence that this dynamic remodeling of cell junctions is mediated by several mechanisms at the transcriptional and post-translational levels. This review summarizes what is known about the transcriptional regulation, ubiquitination and endocytosis that are involved in modulating junction dynamics in epithelial cells. It also highlights the recent findings on the regulation of junction dynamics in the testis and the specific areas that require further research for a thorough understanding of the role of junction remodeling in spermatogenesis. Understanding the junction dynamics in the seminiferous epithelium may unfold new targets for non-hormonal male contraceptive development.
机译:细胞连接是细胞附着到相邻细胞的位置。它们不仅保持组织完整性,而且其更新在细胞发育和形态发生中也起着至关重要的作用。在睾丸中,紧密连接和粘附连接被动态地重塑,以允许减数分裂后的生殖细胞穿过生精上皮移动,并及时将精子释放到管状内腔中。越来越多的证据表明,细胞连接的这种动态重塑是由转录和翻译后水平的几种机制介导的。这篇综述总结了有关转录调控,泛素化和内吞作用的知识,这些转录调控作用涉及上皮细胞的连接动力学。它还强调了有关睾丸中结动态调节的最新发现以及需要进一步研究以彻底了解结重构在精子发生中作用的特定领域。了解生精上皮的连接动力学可能会为非荷尔蒙男性避孕发展提供新的靶点。

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