Research Group Molecular Organogenesis, Max Planck Institute for Biophysical Chemistry, Am Fassberg, 37077 Göttingen, Germany.
J Biol Chem. 2012 Oct 26;287(44):36756-65. doi: 10.1074/jbc.M112.399410. Epub 2012 Aug 28.
Claudins are integral transmembrane components of the tight junctions forming trans-epithelial barriers in many organs, such as the nervous system, lung, and epidermis. In Drosophila three claudins have been identified that are required for forming the tight junctions analogous structure, the septate junctions (SJs). The lack of claudins results in a disruption of SJ integrity leading to a breakdown of the trans-epithelial barrier and to disturbed epithelial morphogenesis. However, little is known about claudin partners for transport mechanisms and membrane organization. Here we present a comprehensive analysis of the claudin proteome in Drosophila by combining biochemical and physiological approaches. Using specific antibodies against the claudin Megatrachea for immunoprecipitation and mass spectrometry, we identified 142 proteins associated with Megatrachea in embryos. The Megatrachea interacting proteins were analyzed in vivo by tissue-specific knockdown of the corresponding genes using RNA interference. We identified known and novel putative SJ components, such as the gene product of CG3921. Furthermore, our data suggest that the control of secretion processes specific to SJs and dependent on Sec61p may involve Megatrachea interaction with Sec61 subunits. Also, our findings suggest that clathrin-coated vesicles may regulate Megatrachea turnover at the plasma membrane similar to human claudins. As claudins are conserved both in structure and function, our findings offer novel candidate proteins involved in the claudin interactome of vertebrates and invertebrates.
紧密连接是许多器官(如神经系统、肺和表皮)形成上皮屏障的跨膜整合成分,Claudin 是其组成部分。在果蝇中,已经鉴定出三种 Claudin,它们是形成类似于紧密连接的结构——隔膜连接(SJ)所必需的。Claudin 的缺乏会导致 SJ 完整性的破坏,导致上皮屏障的破坏和上皮形态发生的紊乱。然而,对于运输机制和膜组织的 Claudin 伙伴知之甚少。在这里,我们通过结合生化和生理方法,对果蝇中的 Claudin 蛋白质组进行了全面分析。使用针对 Claudin Megatrachea 的特异性抗体进行免疫沉淀和质谱分析,我们在胚胎中鉴定出了 142 种与 Megatrachea 相关的蛋白质。通过 RNA 干扰特异性敲低相应基因,在体内分析了 Megatrachea 相互作用蛋白。我们鉴定了已知和新的假定的 SJ 成分,如 CG3921 基因产物。此外,我们的数据表明,Sec61p 依赖的特定于 SJ 的分泌过程的控制可能涉及 Megatrachea 与 Sec61 亚基的相互作用。此外,我们的研究结果表明,网格蛋白包被的囊泡可能通过类似于人类 Claudin 的机制调节质膜上 Megatrachea 的周转。由于 Claudin 在结构和功能上都具有保守性,因此我们的研究结果为参与脊椎动物和无脊椎动物 Claudin 相互作用组的新候选蛋白提供了依据。