Department of Physiology , The Johns Hopkins University School of Medicine , Baltimore , Maryland 21205 , United States.
ACS Chem Biol. 2019 Nov 15;14(11):2406-2423. doi: 10.1021/acschembio.9b00695. Epub 2019 Sep 30.
Synthesis and regulation of lipid levels and identities is critical for a wide variety of cellular functions, including structural and morphological properties of organelles, energy storage, signaling, and stability and function of membrane proteins. Proteolytic cleavage events regulate and/or influence some of these lipid metabolic processes and as a result help modulate their pleiotropic cellular functions. Proteins involved in lipid regulation are proteolytically cleaved for the purpose of their relocalization, processing, turnover, and quality control, among others. The scope of this review includes proteolytic events governing cellular lipid dynamics. After an initial discussion of the classic example of sterol regulatory element-binding proteins, our focus will shift to the mitochondrion, where a range of proteolytic events are critical for normal mitochondrial phospholipid metabolism and enforcing quality control therein. Recently, mitochondrial phospholipid metabolic pathways have been implicated as important for the proliferative capacity of cancers. Thus, the assorted proteases that regulate, monitor, or influence the activity of proteins that are important for phospholipid metabolism represent attractive targets to be manipulated for research purposes and clinical applications.
脂质水平和种类的合成和调节对于多种细胞功能至关重要,包括细胞器的结构和形态特性、能量储存、信号转导以及膜蛋白的稳定性和功能。蛋白水解切割事件调节和/或影响这些脂质代谢过程中的一些,从而有助于调节它们的多效性细胞功能。参与脂质调节的蛋白质被蛋白水解切割,目的是重新定位、加工、周转和质量控制等。本综述的范围包括控制细胞脂质动态的蛋白水解事件。在最初讨论了固醇调节元件结合蛋白的经典例子之后,我们的重点将转移到线粒体,其中一系列蛋白水解事件对于正常的线粒体磷脂代谢和其中的质量控制至关重要。最近,线粒体磷脂代谢途径被认为对癌症的增殖能力很重要。因此,调节、监测或影响对磷脂代谢重要的蛋白质活性的各种蛋白酶代表了有吸引力的研究目的和临床应用的操纵目标。