From the Departments of Biochemistry.
Medicine, and.
J Biol Chem. 2019 Jul 5;294(27):10544-10552. doi: 10.1074/jbc.RA119.008824. Epub 2019 May 24.
Cavin-1/polymerase I and transcript release factor (PTRF) is a requisite component of caveolae, small plasma membrane invaginations that are highly abundant in adipocytes. Cavin-1 is a dynamic molecule whose dissociation from caveolae plays an important role in mechanoprotection and rRNA synthesis. In the former situation, the acute dissociation of cavin-1 from caveolae allows cell membrane expansion that occurs upon insulin-aided lipid uptake into the fat cells. Cavin-1 dissociation from caveolae and membrane flattening alters the cytoskeleton and the interaction of plasma membrane proteins with the extracellular matrix through interactions with focal adhesion structures. Here, using cavin-1 knockout mice, subcellular fractionation, and immunoblotting methods, we addressed the relationship of cavin-1 with focal adhesion complexes following nutritional stimulation. We found that cavin-1 is acutely translocated to focal complex compartments upon insulin stimulation, where it regulates focal complex formation through an interaction with paxillin. We found that loss of cavin-1 impairs focal complex remodeling and focal adhesion formation and causes a mechanical stress response, concomitant with activation of proinflammatory and senescence/apoptosis pathways. We conclude that cavin-1 plays key roles in dynamic remodeling of focal complexes upon metabolic stimulation. This mechanism also underlies the crucial role of caveolae in the long-term healthy expansion of the adipocyte.
窖蛋白 1/聚合酶 I 和转录释放因子(PTRF)是质膜凹陷小泡(即小窝)的必需组成部分,小窝在脂肪细胞中高度丰富。窖蛋白 1 是一种动态分子,其从小窝中的解离在机械保护和 rRNA 合成中发挥重要作用。在前一种情况下,窖蛋白 1 从小窝中的急性解离允许细胞膜扩张,这种扩张发生在胰岛素辅助脂质进入脂肪细胞时。窖蛋白 1 从小窝和细胞膜的解离会改变细胞骨架,以及质膜蛋白与细胞外基质的相互作用,通过与黏着斑结构的相互作用。在这里,我们使用窖蛋白 1 敲除小鼠、亚细胞分级分离和免疫印迹方法,研究了营养刺激后窖蛋白 1 与黏着斑复合物的关系。我们发现,胰岛素刺激后窖蛋白 1 会被急性转位到黏着斑复合物隔室,在那里它通过与桩蛋白相互作用来调节黏着斑复合物的形成。我们发现,窖蛋白 1 的缺失会损害黏着斑复合物的重塑和黏着斑的形成,并导致机械应激反应,同时激活促炎和衰老/凋亡途径。我们的结论是,窖蛋白 1 在代谢刺激下的黏着斑复合物的动态重塑中发挥关键作用。这种机制也说明了小窝在脂肪细胞的长期健康扩张中的关键作用。