Braun Anne, Pinyol Roser, Dahlhaus Regina, Koch Dennis, Fonarev Paul, Grant Barth D, Kessels Michael M, Qualmann Britta
Department of Neurochemistry and Molecular Biology, Leibniz Institute for Neurobiology, D-39118 Magdeburg, Germany.
Mol Biol Cell. 2005 Aug;16(8):3642-58. doi: 10.1091/mbc.e05-01-0076. Epub 2005 Jun 1.
EHD proteins were shown to function in the exit of receptors and other membrane proteins from the endosomal recycling compartment. Here, we identify syndapins, accessory proteins in vesicle formation at the plasma membrane, as differential binding partners for EHD proteins. These complexes are formed by direct eps15-homology (EH) domain/asparagine proline phenylalanine (NPF) motif interactions. Heterologous and endogenous coimmunoprecipitations as well as reconstitutions of syndapin/EHD protein complexes at intracellular membranes of living cells demonstrate the in vivo relevance of the interaction. The combination of mutational analysis and coimmunoprecipitations performed under different nucleotide conditions strongly suggest that nucleotide binding by EHD proteins modulates the association with syndapins. Colocalization studies and subcellular fractionation experiments support a role for syndapin/EHD protein complexes in membrane trafficking. Specific interferences with syndapin-EHD protein interactions by either overexpression of the isolated EHD-binding interface of syndapin II or of the EHD1 EH domain inhibited the recycling of transferrin to the plasma membrane, suggesting that EH domain/NPF interactions are critical for EHD protein function in recycling. Consistently, both inhibitions were rescued by co-overexpression of the attacked protein component. Our data thus reveal that, in addition to a crucial role in endocytic internalization, syndapin protein complexes play an important role in endocytic receptor recycling.
EHD蛋白已被证明在受体和其他膜蛋白从内体循环区室的输出过程中发挥作用。在此,我们鉴定了syndapin蛋白,它是质膜上囊泡形成过程中的辅助蛋白,是EHD蛋白的差异结合伴侣。这些复合物是由直接的eps15同源(EH)结构域/天冬酰胺-脯氨酸-苯丙氨酸(NPF)基序相互作用形成的。异源和内源性共免疫沉淀以及在活细胞内膜上对syndapin/EHD蛋白复合物的重组证明了这种相互作用在体内的相关性。在不同核苷酸条件下进行的突变分析和共免疫沉淀的结合有力地表明,EHD蛋白的核苷酸结合调节了与syndapin的结合。共定位研究和亚细胞分级分离实验支持了syndapin/EHD蛋白复合物在膜运输中的作用。通过过表达syndapin II的分离的EHD结合界面或EHD1的EH结构域对syndapin-EHD蛋白相互作用进行特异性干扰,抑制了转铁蛋白向质膜的循环,这表明EH结构域/NPF相互作用对于EHD蛋白在循环中的功能至关重要。一致地,通过共同过表达受攻击的蛋白质组分,两种抑制作用都得到了挽救。因此,我们的数据表明,除了在胞吞内化中起关键作用外,syndapin蛋白复合物在胞吞受体循环中也发挥着重要作用。