Mary M. Wohlford Laboratory for Male Contraceptive Research, Center for Biomedical Research, Population Council, 1230 York Ave, New York, NY 10065, USA.
FASEB J. 2013 Mar;27(3):1137-52. doi: 10.1096/fj.12-212977. Epub 2013 Jan 3.
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.
在哺乳动物的睾丸中,紧密连接(TJ)、基底质膜外的特殊结构和缝隙连接(GJ),以及靠近基底膜的桥粒,共同构成了血睾屏障(BTB)。然而,BTB 的最显著特征是广泛的肌动蛋白丝束网络,这使其成为最紧密的血组织屏障之一。BTB 会进行结构重组,以促进精母细胞在生精上皮周期的第 VIII-IX 期穿过。因此,BTB 的 F-肌动蛋白网络通过一个尚未探索的机制进行周期性重组。Rictor 是 mTORC2 的关键组成部分,已知其可以调节肌动蛋白细胞骨架,在生精上皮的 BTB 中表现出特异性表达。在第 VIII-IX 期的小管中,其在 BTB 中的表达下调,与这些阶段的 BTB 结构重组相吻合。使用体内模型,在阿朱丁诱导的 BTB 破坏期间,也检测到 BTB 处的 rictor 下调,表明 rictor 的表达与 BTB 完整性的状态呈正相关。事实上,通过 RNAi 敲低 rictor 被发现会扰乱体外支持细胞 TJ 屏障功能和体内 BTB 完整性。这种屏障功能的丧失伴随着体外和体内支持细胞 BTB 处 F-肌动蛋白组织的变化,与肌动蛋白与α-连环蛋白或 ZO-1 之间的相互作用丧失有关。RNAi 敲低 rictor 也被发现会阻碍支持细胞-细胞 GJ 通讯,破坏 BTB 处的蛋白分布(例如,occludin、ZO-1),表明 rictor 是一个至关重要的 BTB 调节剂。