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首页> 外文期刊>Endocrinology >rpS6 Regulates Blood-Testis Barrier Dynamics Through Arp3-Mediated Actin Microfilament Organization in Rat Sertoli Cells. An In Vitro Study
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rpS6 Regulates Blood-Testis Barrier Dynamics Through Arp3-Mediated Actin Microfilament Organization in Rat Sertoli Cells. An In Vitro Study

机译:rpS6通过Arp3介导的肌动蛋白微丝组织在大鼠支持细胞中调节血液-睾丸屏障动力学。体外研究

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摘要

In the seminiferous epithelium of rat testes, preleptotene spermatocytes residing in the basal compartment are transported across the blood-testis barrier (BTB) to enter the adluminal compartment at stage VIII of the epithelial cycle. This process involves redistribution of tight junction (TJ) proteins via reorganization of actin cytoskeleton in Sertoli cells that serves as attachment site for adhesion protein complexes. Ribosomal protein S6 (rpS6), a downstream molecule of mTORC1 (mammalian target of rapamycin complex 1), participates in this process via a yet-to-be defined mechanism. Here, we constructed an rpS6 quadruple phosphomimetic mutant by converting Ser residues at 235, 236, 240, and 244 to Glu via site-directed mutagenesis, making this mutant constitutively active. When this rpS6 mutant was overexpressed in Sertoli cells cultured in vitro with an established TJ barrier mimicking the BTB in vivo, it perturbed the TJ permeability by down-regulating and redistributing TJ proteins at the cell-cell interface. These changes are mediated by a reorganization of actin microfilaments, which was triggered by a redistribution of activated actin-related protein 3 (Arp3) as well as changes in Arp3-neuronal Wiskott-Aldrich Syndrome protein (N-WASP) interaction. This in turn induced reorganization of actin microfilaments, converting them from a "bundled" to an "unbundled/branched" configuration, concomitant with a reduced actin bundling activity, thereby destabilizing the TJ-barrier function. These changes were mediated by Akt (transforming oncogene of v-akt), because an Akt knockdown by RNA interference was able to mimic the phenotypes of rpS6 mutant overexpression at the Sertoli cell BTB. In summary, this study illustrates a mechanism by which mTORC1 signal complex regulates BTB function through rpS6 downstream by modulating actin organization via the Arp2/3 complex, which may be applicable to other tissue barriers.
机译:在大鼠睾丸的生精上皮中,位于基底隔室中的前瘦素精细胞被转运穿过血睾屏障(BTB),进入上皮循环第VIII期的肾上腺隔室。此过程涉及通过重新排列Sertoli细胞中肌动蛋白细胞骨架,重新结合紧密连接(TJ)蛋白,该细胞充当粘附蛋白复合物的附着位点。核糖体蛋白S6(rpS6)是mTORC1(雷帕霉素复合物1的哺乳动物靶标)的下游分子,尚待确定的机制参与该过程。在这里,我们通过定点诱变将235、236、240和244处的Ser残基转化为Glu,从而构建了一个rpS6四磷酸拟体突变体,从而使该突变体具有组成型活性。当此rpS6突变体在体外培养的Sertoli细胞中过表达时,已经建立了模仿体内BTB的已建立的TJ屏障,它通过在细胞-细胞界面下调和重新分布TJ蛋白来干扰TJ的通透性。这些变化是由肌动蛋白微丝的重组介导的,肌动蛋白微丝的重组是由活化肌动蛋白相关蛋白3(Arp3)的重新分布以及Arp3-神经元维斯科特-奥尔德里奇综合症蛋白(N-WASP)相互作用的变化触发的。这继而引起肌动蛋白微丝的重组,将其从“束缚”构型转变为“解束/支链”构型,同时伴随着肌动蛋白束缚活性降低,从而使TJ屏障功能不稳定。这些变化是由Akt(转化为v-akt的致癌基因)介导的,因为RNA干扰对Akt的抑制作用能够模拟Sertoli细胞BTB上rpS6突变体过表达的表型。总而言之,这项研究阐明了一种机制,其中mTORC1信号复合物通过rpS6下游通过Arp2 / 3复合物调节肌动蛋白的组织来调节BTB功能,这可能适用于其他组织屏障。

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