Chatenay-Rivauday Christian, Cakar Z Petek, Jenö Paul, Kuzmenko Elena S, Fiedler Klaus
Division of Biochemistry, Biozentrum, University of Basel, Klingelbergstrasse 70, CH-4056 Basel, Switzerland.
Mol Biol Rep. 2004 Jun;31(2):67-84. doi: 10.1023/b:mole.0000031352.51910.e9.
Caveolae appear in a multitude of processes encompassing growth regulation and trafficking. We demonstrate the abundant presence of ESA/reggie-1/flotillin-2, ATP synthase beta subunit and annexin V in endothelial caveolae by immunopurification of caveolae from vascular endothelial membrane. Five proteins are abundant in a caveolin-1 protein complex, analyzed by sucrose gradient velocity sedimentation following octyl-beta-D-glucopyranoside extraction. Caveolin-1 alpha interacts with caveolin-1beta, caveolin-2, actin, the microsomal form of NADH cytochrome B5 reductase and ESA/reggie-1/flotillin-2 as shown by co-immunoprecipitation. We propose the concept that ATP biosynthesis in caveolae regulates mechanosignaling and is induced by membrane depolarization and a proton gradient. Pressure stimuli and metabolic changes may trigger gene regulation in endothelial cells, involving a nuclear conformer of caveolin-1, shown here with an epitope-specific caveolin-1 antibody, and immediate response of ion channel activity, regulated by ESA/reggie-1/flotillin-2.
小窝出现在包括生长调节和运输在内的众多过程中。我们通过从血管内皮膜免疫纯化小窝,证明了内皮小窝中存在大量的ESA/reggie-1/小窝蛋白-2、ATP合酶β亚基和膜联蛋白V。在用辛基-β-D-吡喃葡萄糖苷提取后,通过蔗糖梯度速度沉降分析,发现有五种蛋白质在小窝蛋白-1蛋白复合物中含量丰富。共免疫沉淀显示,小窝蛋白-1α与小窝蛋白-1β、小窝蛋白-2、肌动蛋白、NADH细胞色素B5还原酶的微粒体形式以及ESA/reggie-1/小窝蛋白-2相互作用。我们提出了一个概念,即小窝中的ATP生物合成调节机械信号传导,并由膜去极化和质子梯度诱导。压力刺激和代谢变化可能触发内皮细胞中的基因调节,这涉及小窝蛋白-1的一种核构象体(此处用一种表位特异性小窝蛋白-1抗体显示),以及由ESA/reggie-1/小窝蛋白-2调节的离子通道活性的即时反应。