Luo Shilu, Yang Ming, Zhao Hao, Han Yachun, Jiang Na, Yang Jinfei, Chen Wei, Li Chenrui, Liu Yan, Zhao Chanyue, Sun Lin
Department of Nephrology, The Second Xiangya Hospital, Central South University, Changsha, China.
Hunan Key Laboratory of Kidney Disease and Blood Purification, Changsha, China.
Front Pharmacol. 2021 Dec 10;12:768100. doi: 10.3389/fphar.2021.768100. eCollection 2021.
The kidney is an energy-consuming organ, and cellular metabolism plays an indispensable role in kidney-related diseases. Caveolin-1 (Cav-1), a multifunctional membrane protein, is the main component of caveolae on the plasma membrane. Caveolae are represented by tiny invaginations that are abundant on the plasma membrane and that serve as a platform to regulate cellular endocytosis, stress responses, and signal transduction. However, caveolae have received increasing attention as a metabolic platform that mediates the endocytosis of albumin, cholesterol, and glucose, participates in cellular metabolic reprogramming and is involved in the progression of kidney disease. It is worth noting that caveolae mainly depend on Cav-1 to perform the abovementioned cellular functions. Furthermore, the mechanism by which Cav-1 regulates cellular metabolism and participates in the pathophysiology of kidney diseases has not been completely elucidated. In this review, we introduce the structure and function of Cav-1 and its functions in regulating cellular metabolism, autophagy, and oxidative stress, focusing on the relationship between Cav-1 in cellular metabolism and kidney disease; in addition, Cav-1 that serves as a potential therapeutic target for treatment of kidney disease is also described.
肾脏是一个耗能器官,细胞代谢在肾脏相关疾病中起着不可或缺的作用。小窝蛋白-1(Cav-1)是一种多功能膜蛋白,是质膜上小窝的主要成分。小窝由质膜上丰富的微小内陷所代表,作为调节细胞内吞作用、应激反应和信号转导的平台。然而,小窝作为介导白蛋白、胆固醇和葡萄糖内吞作用、参与细胞代谢重编程并涉及肾脏疾病进展的代谢平台,受到了越来越多的关注。值得注意的是,小窝主要依赖Cav-1来执行上述细胞功能。此外,Cav-1调节细胞代谢并参与肾脏疾病病理生理学的机制尚未完全阐明。在本综述中,我们介绍了Cav-1的结构和功能及其在调节细胞代谢、自噬和氧化应激中的功能,重点关注细胞代谢中的Cav-1与肾脏疾病之间的关系;此外,还描述了作为肾脏疾病治疗潜在靶点的Cav-1。