来源于基底膜的胶原α3(IV) NC1结构域调控支持细胞血睾丸屏障动力学。

Spermatogenesis Pub Date : 2013-04-01 DOI:10.4161/spmg.25465
Elissa W P Wong, C Yan Cheng
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引用次数: 35

摘要

血睾丸屏障(BTB)是精子发生的重要超微结构。新生大鼠BTB形成的延迟或成年大鼠BTB不可逆转的损伤会导致减数分裂停滞和a型以外的精原细胞分化失败。虽然激素,如睾酮和FSH,对BTB功能至关重要,但很少有人知道在精原上皮中是否存在调节BTB功能的局部调节机制。本文报道了大鼠睾丸基底膜成分胶原α3(IV)链可以通过基质金属蛋白酶-9 (MMP-9)的有限蛋白水解产生非胶原(NC1)结构域肽[Colα3(IV) NC1],并且TNFα上调了MMP-9的表达。大肠杆菌中产生的重组Colα3(IV) NC1蛋白可能由于缺乏糖基化而无法干扰Sertoli细胞紧密连接(TJ)-通透性屏障功能,而在哺乳动物细胞中产生并经亲和层析纯化至明显同质的重组Colα3(IV) NC1蛋白可可逆地干扰Sertoli细胞TJ-屏障功能。有趣的是,Colα3(IV) NC1重组蛋白并没有扰乱BTB中几种TJ-(例如,occludin, CAR, JAM-A, ZO-1)和基础外质特化-(例如,N-cadherin, α-catenin, β-catenin)蛋白的稳态水平,但诱导了蛋白质定位和/或在Sertoli细胞-细胞界面的分布的变化,这些蛋白质从细胞表面移动到细胞质中,从而破坏了TJ功能。这些发现说明了BTB-基底膜轴在精子发生过程中调控BTB重组的局部调控轴的存在。
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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NC1 domain of collagen α3(IV) derived from the basement membrane regulates Sertoli cell blood-testis barrier dynamics.

The blood-testis barrier (BTB) is an important ultrastructure for spermatogenesis. Delay in BTB formation in neonatal rats or its irreversible damage in adult rats leads to meiotic arrest and failure of spermatogonial differentiation beyond type A. While hormones, such as testosterone and FSH, are crucial to BTB function, little is known if there is a local regulatory mechanism in the seminiferous epithelium that modulates BTB function. Herein, we report that collagen α3(IV) chain, a component of the basement membrane in the rat testis, could generate a noncollagenous (NC1) domain peptide [Colα3(IV) NC1] via limited proteolysis by matrix metalloproteinase-9 (MMP-9), and that the expression of MMP-9 was upregulated by TNFα. While recombinant Colα3(IV) NC1 protein produced in E. coli failed to perturb Sertoli cell tight junction (TJ)-permeability barrier function, possibly due to the lack of glycosylation, Colα3(IV) NC1 recombinant protein produced in mammalian cells and purified to apparent homogeneity by affinity chromatography was found to reversibly perturb the Sertoli cell TJ-barrier function. Interestingly, Colα3(IV) NC1 recombinant protein did not perturb the steady-state levels of several TJ- (e.g., occludin, CAR, JAM-A, ZO-1) and basal ectoplasmic specialization- (e.g., N-cadherin, α-catenin, β-catenin) proteins at the BTB but induced changes in protein localization and/or distribution at the Sertoli cell-cell interface in which these proteins moved from the cell surface into the cell cytosol, thereby destabilizing the TJ function. These findings illustrate the presence of a local regulatory axis known as the BTB-basement membrane axis that regulates BTB restructuring during spermatogenesis.

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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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