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基底膜层粘连蛋白α2通过其对F-肌动蛋白和微管细胞骨架的作用,经由mTORC1信号传导介导血-睾屏障动力学的调节。

Basement Membrane Laminin α2 Regulation of BTB Dynamics via Its Effects on F-Actin and Microtubule Cytoskeletons Is Mediated Through mTORC1 Signaling.

作者信息

Gao Ying, Chen Haiqi, Lui Wing-Yee, Lee Will M, Cheng C Yan

机构信息

The Mary M. Wohlford Laboratory for Male Contraceptive Research, Center for Biomedical Research, Population Council, New York, New York.

School of Biological Sciences, The University of Hong Kong, Pokfulam, Hong Kong, China.

出版信息

Endocrinology. 2017 Apr 1;158(4):963-978. doi: 10.1210/en.2016-1630.

Abstract

A local axis connects the apical ectoplasmic specialization (ES) at the Sertoli-spermatid interface, the basal ES at the blood-testis barrier (BTB), and the basement membrane across the seminiferous epithelium functionally in rat testes. As such, cellular events that take place simultaneously across the epithelium such as spermiation and BTB remodeling that occur at the apical ES and the basal ES, respectively, at stage VIII of the cycle are coordinated. Herein, laminin α2, a structural component of the basement membrane, was found to regulate BTB dynamics. Sertoli cells were cultured in vitro to allow the establishment of a tight junction (TJ) barrier that mimicked the BTB in vivo. Knockdown of laminin α2 by transfecting Sertoli cells with laminin α2-specific short hairpin RNA vs the nontargeting negative control was shown to perturb the Sertoli cell TJ barrier, illustrating laminin α2 was involved in regulating BTB dynamics. This regulatory effect was mediated through mammalian target of rapamycin complex 1 (mTORC1) signaling because the two mTORC1 downstream signaling molecules ribosomal protein S6 and Akt1/2 were activated and inactivated, respectively, consistent with earlier findings that mTORC1 is involved in promoting BTB remodeling. Also, laminin α2 knockdown induced F-actin and microtubule (MT) disorganization through changes in the spatial expression of F-actin regulators actin-related protein 3 and epidermal growth factor receptor pathway substrate 8 vs end-binding protein 1 (a MT plus-end tracking protein, +TIP). These laminin α2 knockdown-mediated effects on F-actin and MT organization was blocked by exposing Sertoli cells to rapamycin, an inhibitor of mTORC1 signaling, and also SC79, an activator of Akt. In summary, laminin α2-mediated regulation on Sertoli cell BTB dynamics is through mTORC1 signaling.

摘要

在大鼠睾丸中,一条局部轴在功能上连接了支持细胞 - 精子细胞界面处的顶端胞质特化(ES)、血 - 睾屏障(BTB)处的基底ES以及生精上皮的基底膜。因此,在周期的第VIII阶段分别发生在顶端ES和基底ES处的同时跨越上皮的细胞事件,如精子释放和BTB重塑,是相互协调的。在此,发现基底膜的结构成分层粘连蛋白α2可调节BTB动力学。将支持细胞进行体外培养以建立模拟体内BTB的紧密连接(TJ)屏障。与非靶向阴性对照相比,用层粘连蛋白α2特异性短发夹RNA转染支持细胞以敲低层粘连蛋白α2,结果显示会扰乱支持细胞TJ屏障,说明层粘连蛋白α2参与调节BTB动力学。这种调节作用是通过雷帕霉素靶蛋白复合物1(mTORC1)信号传导介导的,因为mTORC1的两个下游信号分子核糖体蛋白S6和Akt1/2分别被激活和失活,这与早期发现mTORC1参与促进BTB重塑一致。此外,层粘连蛋白α2敲低通过肌动蛋白相关蛋白3和表皮生长因子受体途径底物8与末端结合蛋白1(一种微管正端追踪蛋白,+TIP)的空间表达变化诱导F - 肌动蛋白和微管(MT)紊乱。将支持细胞暴露于mTORC1信号抑制剂雷帕霉素以及Akt激活剂SC79后,可阻断层粘连蛋白α2敲低介导的对F - 肌动蛋白和MT组织的这些影响。总之,层粘连蛋白α2对支持细胞BTB动力学的调节是通过mTORC1信号传导实现的。

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