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Rictor/mTORC2 regulates blood-testis barrier dynamics via its effects on gap junction communications and actin filament network

机译:Rictor / mTORC2通过影响间隙连接通讯和肌动蛋白丝网络来调节血液-睾丸屏障动力学

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摘要

In the mammalian testis, coexisting tight junctions (TJs), basal ectoplasmic specializations, and gap junctions (GJs), together with desmosomes near the basement membrane, constitute the blood-testis barrier (BTB). The most notable feature of the BTB, however, is the extensive network of actin filament bundles, which makes it one of the tightest blood-tissue barriers. The BTB undergoes restructuring to facilitate the transit of preleptotene spermatocytes at stage VIII-IX of the epithelial cycle. Thus, the F-actin network at the BTB undergoes cyclic reorganization via a yet-to-be explored mechanism. Rictor, the key component of mTORC2 that is known to regulate actin cytoskeleton, was shown to express stage-specifically at the BTB in the seminiferous epithelium. Its expression was down-regulated at the BTB in stage VIII-IX tubules, coinciding with BTB restructuring at these stages. Using an in vivo model, a down-regulation of rictor at the BTB was also detected during adjudin-induced BTB disruption, illustrating rictor expression is positively correlated with the status of the BTB integrity. Indeed, the knockdown of rictor by RNAi was found to perturb the Sertoli cell TJ-barrier function in vitro and the BTB integrity in vivo. This loss of barrier function was accompanied by changes in F-actin organization at the Sertoli cell BTB in vitro and in vivo, associated with a loss of interaction between actin and α-catenin or ZO-1. Rictor knockdown by RNAi was also found to impede Sertoli cell-cell GJ communication, disrupting protein distribution (e.g., occludin, ZO-1) at the BTB, illustrating that rictor is a crucial BTB regulator.—Mok, K., Mruk, D. D., Lee, W. M., Cheng, C. Y. Rictor/mTORC2 regulates blood-testis barrier dynamics via its effects on gap junction communications and actin filament network.
机译:在哺乳动物的睾丸中,并存的紧密连接(TJ),基底胞浆特化和间隙连接(GJ)与基底膜附近的桥粒一起构成了血液-睾丸屏障(BTB)。然而,BTB的最显着特征是广泛的肌动蛋白丝束网络,这使其成为最严格的组织屏障之一。在上皮周期的VIII-IX期,BTB进行重组以促进前瘦素精细胞的转运。因此,BTB处的F-肌动蛋白网络通过尚待探索的机制经历了循环重组。 Rictor是mTORC2的关键成分,已知它调节肌动蛋白的细胞骨架,已显示在生精上皮的BTB阶段特异性表达。其表达在VIII-IX期小管中的BTB下调,与在这些阶段的BTB重组相吻合。使用体内模型,在adjudin诱导的BTB破坏过程中还检测到了BTB rictor的下调,这说明rictor的表达与BTB完整性的状态呈正相关。确实,发现通过RNAi敲除rictor会在体外干扰Sertoli细胞的TJ屏障功能和体内的BTB完整性。这种屏障功能的丧失伴随着体外和体内Sertoli细胞BTB F-肌动蛋白组织的变化,与肌动蛋白和α-catenin或ZO-1之间相互作用的丧失有关。还发现RNAi敲除Rictor会阻碍Sertoli细胞-细胞GJ通讯,破坏BTB处的蛋白质分布(例如occludin,ZO-1),这说明rictor是至关重要的BTB调节剂。—Mok,K.,Mruk,DD Rictor / mTORC2,Lee,WM,Cheng,CY Rictor通过其对间隙连接通讯和肌动蛋白丝网络的影响来调节血液-睾丸屏障动力学。

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