Lee Nikki P Y, Cheng C Yan
Population Council, Center for Biomedical Research, 1230 York Avenue, New York, NY 10021, USA.
Biol Reprod. 2004 Aug;71(2):392-404. doi: 10.1095/biolreprod.104.027268. Epub 2004 Mar 31.
Adaptors are component proteins of junctional complexes in all epithelia, including the seminiferous epithelium of the mammalian testis. They recruit other regulatory and structural proteins to the site of both anchoring junctions (such as cell-cell actin-based adherens junctions [AJs], e.g., ectoplasmic specialization [ES] and tubulobulbar complex, which are both testis-specific cell-cell actin-based AJ types, and cell-cell intermediate filament-based desmosome-like junctions) and tight junctions (TJ). Furthermore, adaptors per se can be substrates and/or activators of kinases or phosphatases. As such, the integrity of cell junctions and the regulation of junction dynamics during spermatogenesis rely on adaptors for their ability to recruit and link different junctional components to the same site and to tether transmembrane proteins at both anchoring and TJ sites to the underlying cytoskeletons, such as the actin filaments, intermediate filaments, and microtubules. These protein-protein interactions are possible because adaptors are composed of conserved protein binding domains, which allow them to link to more than one structural or signaling protein, recruiting multi-protein complexes to the same site. Herein, we provide a timely review of adaptors recently found at the sites of AJ (e.g., ES) and TJ. In addition, several in vivo models that can be used to delineate the function of adaptors in the testis are described, and the role of adaptors in regulating junction dynamics pertinent to spermatogenesis is discussed.
衔接蛋白是所有上皮组织中连接复合体的组成蛋白,包括哺乳动物睾丸的生精上皮。它们将其他调节蛋白和结构蛋白招募到锚定连接(如基于肌动蛋白的细胞间黏附连接[AJs],例如外质特化[ES]和球管复合体,这两种都是睾丸特异性的基于肌动蛋白的细胞间AJ类型,以及基于中间丝的细胞间桥粒样连接)和紧密连接(TJ)的位点。此外,衔接蛋白本身可以是激酶或磷酸酶的底物和/或激活剂。因此,细胞连接的完整性以及精子发生过程中连接动态的调节依赖于衔接蛋白,因为它们能够招募不同的连接成分并将其连接到同一位点,以及在锚定连接和紧密连接位点将跨膜蛋白拴系到诸如肌动蛋白丝、中间丝和微管等细胞骨架上。这些蛋白质-蛋白质相互作用之所以可能,是因为衔接蛋白由保守的蛋白质结合结构域组成,这使得它们能够与不止一种结构或信号蛋白相连,将多蛋白复合体招募到同一位点。在此,我们及时综述了最近在AJ(如ES)和TJ位点发现的衔接蛋白。此外,还描述了几种可用于阐明衔接蛋白在睾丸中功能的体内模型,并讨论了衔接蛋白在调节与精子发生相关的连接动态中的作用。