Yan Helen H N, Mruk Dolores D, Cheng C Yan
Center for Biomedical Research, Population Council, New York, New York 10021, USA.
Curr Top Dev Biol. 2008;80:57-92. doi: 10.1016/S0070-2153(07)80002-0.
Spermatogenesis that occurs in the seminiferous epithelium of adult mammalian testes is associated with extensive junction restructuring at the Sertoli-Sertoli cell, Sertoli-germ cell, and Sertoli-basement membrane interface. While this morphological phenomenon is known and has been described in great details for decades, the biochemical and molecular changes as well as the mechanisms/signaling pathways that define changes at the cell-cell and cell-matrix interface remain largely unknown until recently. In this chapter, we summarize and discuss findings in the field regarding the coordinated efforts of the anchoring [e.g., adherens junction (AJ), such as basal ectoplasmic specialization (basal ES)] and tight junctions (TJs) that are present in the same microenvironment, such as at the blood-testis barrier (BTB), or at distinctly opposite ends of the Sertoli cell epithelium, such as between apical ectoplasmic specialization (apical ES) in the apical compartment, and the BTB adjacent to the basal compartment of the epithelium. These efforts, in turn, regulate and coordinate different cellular events that occur during the seminiferous epithelial cycle. For instance, the events of spermiation and of preleptotene spermatocyte migration across the BTB both take place concurrently at stage VIII of the epithelial cycle of spermatogenesis. Recent findings suggest that these events are coordinated by protein complexes found at the apical and basal ES and TJ, which are located at different ends of the Sertoli cell epithelium. Besides, we highlight important areas of research that can now be undertaken, and functional studies that can be designed to tackle different issues pertinent to junction restructuring during spermatogenesis.
成年哺乳动物睾丸生精上皮中的精子发生与支持细胞-支持细胞、支持细胞-生殖细胞以及支持细胞-基底膜界面处广泛的连接结构重组有关。尽管这一形态学现象已为人所知,并已被详细描述了数十年,但直到最近,细胞-细胞和细胞-基质界面处的生化和分子变化以及定义这些变化的机制/信号通路仍基本未知。在本章中,我们总结并讨论了该领域的研究结果,这些结果涉及在同一微环境中存在的锚定连接(如黏着连接,如基底外质特化)和紧密连接的协同作用,例如在血睾屏障处,或在支持细胞上皮的明显相对两端,如在顶端隔室的顶端外质特化与上皮基底隔室相邻的血睾屏障之间。这些协同作用进而调节和协调生精上皮周期中发生的不同细胞事件。例如,精子释放和前细线期精母细胞穿过血睾屏障的事件都在精子发生上皮周期的第VIII阶段同时发生。最近的研究结果表明,这些事件是由位于支持细胞上皮不同末端的顶端和基底外质特化及紧密连接处的蛋白质复合物协调的。此外,我们强调了现在可以开展的重要研究领域,以及可以设计的功能研究,以解决与精子发生过程中连接结构重组相关的不同问题