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睾丸中的黏附连接动力学受β1整合素与黏着斑复合体相关蛋白相互作用的调节。

Adhering junction dynamics in the testis are regulated by an interplay of beta 1-integrin and focal adhesion complex-associated proteins.

作者信息

Siu Michelle K Y, Mruk Dolores D, Lee Will M, Cheng C Yan

机构信息

The Population Council, Center for Biomedical Research, New York, New York 10021, USA.

出版信息

Endocrinology. 2003 May;144(5):2141-63. doi: 10.1210/en.2002-221035.

Abstract

During spermatogenesis, the movement of developing germ cells across the seminiferous epithelium associates with extensive restructuring of cell-cell actin-based adherens junctions (AJs), such as ectoplasmic specialization (ES, a testis-specific AJ junction), between Sertoli and germ cells. Although this event of germ cell movement is essential to the completion of spermatogenesis, the mechanism(s) that regulates AJ restructuring is largely unknown. Using Sertoli-germ cells cocultured in vitro to study the regulation of AJ assembly, it was shown that this event associated with a transient induction of beta 1-integrin, vinculin, p-FAK-Tyr(397), and phosphatidylinositol 3-kinase (PI3K) but not the nonphosphorylated form of focal adhesion kinase (FAK), paxillin, and p130 Cas. Furthermore, p-FAK-Tyr(397) was shown to coimmunoprecipitate with beta 1-integrin, vinculin, and c-Src both in vitro and in vivo using Sertoli-germ cell cocultures and seminiferous tubules, respectively. These results seemingly suggest that the testis is using constituent proteins of the focal adhesion complex (FAC) found in other epithelia between cell and extracellular matrix to regulate AJ dynamics. To further confirm that p-FAK, a putative FAC protein in other epithelia, is indeed present at the site of ES, immunohistochemistry and immunofluorescent microscopy were used. The p-FAK-Tyr(397) and p-FAK-Tyr(576) were found to localize almost exclusively at the site of apical ES with weak staining at the basal ES in the seminiferous epithelium in a stage-specific manner, being highest at stages VI-VIII. In contrast, FAK was largely restricted to the basal compartment but with weak staining at the apical compartment. When rats were treated with 1-(2,4-dichlorobenzyl)-indazole-3-carbohydrazide (AF-2364) to perturb Sertoli-germ cell AJs, an induction of beta 1-integrin, vinculin, p-FAK-Tyr(397), PI3K, and p130 Cas but not the nonphosphorylated form of FAK and paxillin was also detected in the testis, coinciding with the time spermatids began to deplete from the epithelium, indicating their involvement in AJ disassembly. Thereafter, the levels of vinculin, p-FAK-Tyr(397), PI3K, and p130 Cas in the testis plunged, coinciding with the declining events of AJ disruption when virtually all spermatids were depleted from the epithelium. Taken collectively, these results suggest a bifunctional role of p-FAK, being involved in the events of Sertoli-germ cell AJ assembly and disassembly. In summary, the events of AJ dynamics in the testis, in particular at the site of ES, are regulated, at least in part, by proteins that are found in the FAC in other epithelia, such as beta1-integrin, vinculin, and FAK utilizing the integrin/pFAK/PI3K/p130 Cas signaling pathway.

摘要

在精子发生过程中,发育中的生殖细胞穿过生精上皮的运动与细胞间基于肌动蛋白的黏附连接(AJs)的广泛重组相关,例如支持细胞与生殖细胞之间的外质特化(ES,一种睾丸特异性AJ连接)。尽管生殖细胞运动这一事件对于精子发生的完成至关重要,但调节AJ重组的机制在很大程度上尚不清楚。利用体外共培养的支持细胞 - 生殖细胞来研究AJ组装的调节,结果表明该事件与β1整合素、纽蛋白、磷酸化的粘着斑激酶(p-FAK-Tyr(397))和磷脂酰肌醇3激酶(PI3K)的短暂诱导相关,但与粘着斑激酶(FAK)的非磷酸化形式、桩蛋白和p130 Cas无关。此外,分别使用支持细胞 - 生殖细胞共培养物和生精小管,在体外和体内均显示p-FAK-Tyr(397)与β1整合素、纽蛋白和c-Src共免疫沉淀。这些结果似乎表明,睾丸正在利用在其他上皮细胞与细胞外基质之间发现的粘着斑复合体(FAC)组成蛋白来调节AJ动态。为了进一步证实p-FAK(其他上皮细胞中的一种假定的FAC蛋白)确实存在于ES部位,使用了免疫组织化学和免疫荧光显微镜技术。发现p-FAK-Tyr(397)和p-FAK-Tyr(576)几乎仅定位于生精上皮顶端ES部位,在基部ES部位染色较弱,且具有阶段特异性,在VI - VIII阶段最高。相比之下,FAK主要局限于基部区域,但在顶端区域染色较弱。当用1-(2,4 - 二氯苄基)-吲唑 - 3 - 碳酰肼(AF - 2364)处理大鼠以扰乱支持细胞 - 生殖细胞AJs时,在睾丸中也检测到β1整合素、纽蛋白、p-FAK-Tyr(397)、PI3K和p130 Cas的诱导,但未检测到FAK和桩蛋白的非磷酸化形式,这与精子细胞开始从上皮中耗尽的时间一致,表明它们参与了AJ的解体。此后,睾丸中纽蛋白、p-FAK-Tyr(397)、PI3K和p130 Cas的水平急剧下降,这与当几乎所有精子细胞都从上皮中耗尽时AJ破坏减少的情况一致。综合来看,这些结果表明p-FAK具有双重功能,参与支持细胞 - 生殖细胞AJ的组装和解体事件。总之,睾丸中AJ动态事件,特别是在ES部位,至少部分地由其他上皮细胞中FAC中发现的蛋白质调节,例如β1整合素、纽蛋白和FAK,它们利用整合素/pFAK/PI3K/p130 Cas信号通路。

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