The Mary M. Wohlford Laboratory for Male Contraceptive Research, Center for Biomedical Research, Population Council, New York, NY, USA.
Cell Cycle. 2009 Nov 1;8(21):3493-9. doi: 10.4161/cc.8.21.9833. Epub 2009 Nov 17.
The blood-testis barrier (BTB) is conferred by co-existing tight junctions (TJs), basal ectoplasmic specializations (basal ES), desmosome-like junctions and gap junctions (GJs) between adjacent Sertoli cells near the basement membrane in the seminiferous epithelium. While the concept of the BTB has been known for more than a century and its significance to spermatogenesis discerned for more than five decades, its regulation has remained largely unknown. Recent studies, however, have demonstrated that focal adhesion kinase (FAK), a modulator of the integrin-based signaling that plays a crucial role in cell movement, apoptosis, cell survival and gene expression at the focal adhesion complex (FAC, also known as focal contact, a cell-matrix anchoring junction type), is an integrated component of the BTB, associated with the TJ-integral membrane protein occludin and its adaptor zonula occludens-1 (ZO-1). Herein, we summarize recent findings in the field regarding the significance of FAK in conferring BTB integrity based on some unexpected observations. We also critically discuss the role of FAK in regulating the timely "opening" and "closing" of the BTB to facilitate the transit of primary preleptotene spermatocytes across the BTB at stage VIII of the seminiferous epithelial cycle of spermatogenesis. Lastly, we describe a working model, which can be used to design future functional experiments to explore the involvement of FAK in BTB dynamics by investigators in the field.
血睾屏障(BTB)由紧密连接(TJ)、基底质膜附近相邻支持细胞的基底外质特化(basal ES)、桥粒样连接和缝隙连接(GJ)共同赋予。虽然血睾屏障的概念已经存在了一个多世纪,其对精子发生的重要性也已经被认识了五十多年,但它的调节机制在很大程度上仍然未知。然而,最近的研究表明,粘着斑激酶(FAK)是整合素信号的调节剂,在细胞运动、细胞凋亡、细胞存活和基因表达的粘着斑复合物(FAC,也称为粘着接触,一种细胞-基质锚定连接类型)中起着至关重要的作用,是血睾屏障的一个组成部分,与 TJ 整合膜蛋白紧密连接蛋白(occludin)及其衔接蛋白封闭蛋白-1(ZO-1)相关。在此,我们根据一些意外的观察结果,总结了该领域中关于 FAK 在赋予血睾屏障完整性方面的重要性的最新发现。我们还批判性地讨论了 FAK 在调节血睾屏障的适时“开放”和“关闭”以促进初级精母细胞穿过精子发生的生精上皮周期的第 VIII 期的血睾屏障中的作用。最后,我们描述了一个工作模型,该模型可用于设计未来的功能实验,以探索该领域的研究人员在血睾屏障动态中涉及 FAK 的情况。