Zimnicka Adriana M, Husain Yawer S, Shajahan Ayesha N, Sverdlov Maria, Chaga Oleg, Chen Zhenlong, Toth Peter T, Klomp Jennifer, Karginov Andrei V, Tiruppathi Chinnaswamy, Malik Asrar B, Minshall Richard D
Department of Pharmacology, University of Illinois at Chicago, Chicago, IL 60612.
Department of Anesthesiology, University of Illinois at Chicago, Chicago, IL 60612.
Mol Biol Cell. 2016 Jul 1;27(13):2090-106. doi: 10.1091/mbc.E15-11-0756. Epub 2016 May 11.
Caveolin 1 (Cav1) is a required structural component of caveolae, and its phosphorylation by Src is associated with an increase in caveolae-mediated endocytosis. Here we demonstrate, using quantitative live-cell 4D, TIRF, and FRET imaging, that endocytosis and trafficking of caveolae are associated with a Cav1 Tyr-14 phosphorylation-dependent conformational change, which spatially separates, or loosens, Cav1 molecules within the oligomeric caveolar coat. When tracked by TIRF and spinning-disk microscopy, cells expressing phosphomimicking Cav1 (Y14D) mutant formed vesicles that were greater in number and volume than with Y14F-Cav1-GFP. Furthermore, we observed in HEK cells cotransfected with wild-type, Y14D, or Y14F Cav1-CFP and -YFP constructs that FRET efficiency was greater with Y14F pairs than with Y14D, indicating that pY14-Cav1 regulates the spatial organization of Cav1 molecules within the oligomer. In addition, albumin-induced Src activation or direct activation of Src using a rapamycin-inducible Src construct (RapR-Src) led to an increase in monomeric Cav1 in Western blots, as well as a simultaneous increase in vesicle number and decrease in FRET intensity, indicative of a Src-mediated conformational change in CFP/YFP-tagged WT-Cav1 pairs. We conclude that phosphorylation of Cav1 leads to separation or "spreading" of neighboring negatively charged N-terminal phosphotyrosine residues, promoting swelling of caveolae, followed by their release from the plasma membrane.
小窝蛋白1(Cav1)是小窝的必需结构成分,其被Src磷酸化与小窝介导的内吞作用增加有关。在这里,我们使用定量活细胞4D、TIRF和FRET成像证明,小窝的内吞作用和运输与Cav1酪氨酸-14磷酸化依赖性构象变化相关,这种变化在空间上分离或松开了寡聚小窝衣被内的Cav1分子。当通过TIRF和转盘显微镜追踪时,表达磷酸模拟Cav1(Y14D)突变体的细胞形成的囊泡在数量和体积上都比Y14F-Cav1-GFP更多。此外,我们在共转染野生型、Y14D或Y14F Cav1-CFP和-YFP构建体的HEK细胞中观察到,Y14F对的FRET效率高于Y14D,这表明pY14-Cav1调节寡聚体内Cav1分子的空间组织。此外,白蛋白诱导的Src激活或使用雷帕霉素诱导的Src构建体(RapR-Src)直接激活Src导致Western印迹中单体Cav1增加,同时囊泡数量增加和FRET强度降低,这表明CFP/YFP标记的WT-Cav1对中存在Src介导的构象变化。我们得出结论,Cav1的磷酸化导致相邻带负电荷的N端磷酸酪氨酸残基分离或“扩散”,促进小窝肿胀,随后它们从质膜释放。