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小窝蛋白-1酪氨酸14位点的Src依赖性磷酸化促进小窝的肿胀和释放。

Src-dependent phosphorylation of caveolin-1 Tyr-14 promotes swelling and release of caveolae.

作者信息

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

机构信息

Department of Pharmacology, University of Illinois at Chicago, Chicago, IL 60612.

Department of Anesthesiology, University of Illinois at Chicago, Chicago, IL 60612.

出版信息

Mol Biol Cell. 2016 Jul 1;27(13):2090-106. doi: 10.1091/mbc.E15-11-0756. Epub 2016 May 11.

Abstract

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.

摘要

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。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af90/4927282/c5bbfba3a62a/2090fig1.jpg

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