在支持细胞中,活蛋白3的过度表达破坏了肌动蛋白微丝束的稳态并扰乱了紧密的连接屏障。

Spermatogenesis Pub Date : 2016-06-28 eCollection Date: 2016-04-01 DOI:10.1080/21565562.2016.1206353
Nan Li, Will M Lee, C Yan Cheng
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引用次数: 5

摘要

在整个精子发生的上皮周期中,肌动蛋白微丝在支持细胞细胞质膜附近成束排列,构成血睾丸屏障(BTB),通过在捆绑和非捆绑/分支结构之间转换进行广泛的重组,使f -肌动蛋白网络具有可塑性。这对于调节preleptene精母细胞在BTB中的运输是至关重要的。在此,我们试图使用体外模型来检测支持细胞BTB中肌动蛋白微丝组织的变化,因为已知体外培养的支持细胞可以建立一个模拟体内BTB的功能性紧密连接(TJ)-渗透性屏障。Plastin 3是一种已知的肌动蛋白微丝交联和捆绑蛋白,当使用哺乳动物表达载体pCI-neo在Sertoli细胞中过表达时,发现尽管其过表达增加了这些细胞的整体肌动蛋白捆绑活性,但却扰乱了Sertoli细胞的tj屏障功能。此外,过表达的plastin 3还扰乱了btb相关蛋白的定位和分布,如occludin-ZO1和N-cadherin-β-catenin,从而破坏了屏障功能的稳定。总的来说,这些数据表明,肌动蛋白微丝在成束组织与非成束/分支结构之间的微妙平衡对于赋予BTB的内稳态及其完整性至关重要。
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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Overexpression of plastin 3 in Sertoli cells disrupts actin microfilament bundle homeostasis and perturbs the tight junction barrier.

Throughout the epithelial cycle of spermatogenesis, actin microfilaments arranged as bundles near the Sertoli cell plasma membrane at the Sertoli cell-cell interface that constitute the blood-testis barrier (BTB) undergo extensive re-organization by converting between bundled and unbundled/branched configuration to give plasticity to the F-actin network. This is crucial to accommodate the transport of preleptotene spermatocytes across the BTB. Herein, we sought to examine changes in the actin microfilament organization at the Sertoli cell BTB using an in vitro model since Sertoli cells cultured in vitro is known to establish a functional tight junction (TJ)-permeability barrier that mimics the BTB in vivo. Plastin 3, a known actin microfilament cross-linker and bundling protein, when overexpressed in Sertoli cells using a mammalian expression vector pCI-neo was found to perturb the Sertoli cell TJ-barrier function even though its overexpression increased the overall actin bundling activity in these cells. Furthermore, plastin 3 overexpression also perturbed the localization and distribution of BTB-associated proteins, such as occludin-ZO1 and N-cadherin-β-catenin, this thus destabilized the barrier function. Collectively, these data illustrate that a delicate balance of actin microfilaments between organized in bundles vs. an unbundled/branched configuration is crucial to confer the homeostasis of the BTB and its integrity.

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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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