Qiu Tian, Kathayat Rahul S, Cao Yang, Beck Michael W, Dickinson Bryan C
Department of Chemistry, The University of Chicago , Chicago, Illinois 60637, United States.
Biochemistry. 2018 Jan 16;57(2):221-225. doi: 10.1021/acs.biochem.7b00835. Epub 2017 Oct 18.
S-Palmitoylation is an abundant lipid post-translational modification that is dynamically installed on and removed from target proteins to regulate their activity and cellular localization. A dearth of tools for studying the activities and regulation of protein S-depalmitoylases, thioesterase "erasers" of protein cysteine S-palmitoylation, has contributed to an incomplete understanding of the role of dynamic S-palmitoylation in regulating proteome lipidation. Recently, we developed "depalmitoylation probes" (DPPs), small molecule probes that become fluorescent upon S-depalmitoylase enzymatic activity. To be suitable for application in live cells, the first-generation DPPs relied on a shorter lipid substrate (C8 vs naturally occurring C16), which enhanced solubility and cell permeability. However, the use of an unnatural lipid substrate on the probes potentially limits the utility of the approach. Herein, we present a new member of the DPP family, DPP-5, which features an anionic carboxylate functional group that increases the probe water solubility. The enhanced water solubility of DPP-5 permits the use of a natural, palmitoylated substrate (C16), rather than a surrogate lipid. We show that DPP-5 is capable of monitoring endogenous S-depalmitoylases in live mammalian cells and that it can reveal changes in S-depalmitoylation levels due to lipid stress. DPP-5 should prove to be a useful new tool for probing the regulation of proteome lipidation through dynamic S-depalmitoylation.
S-棕榈酰化是一种丰富的脂质翻译后修饰,它动态地安装在靶蛋白上并从靶蛋白上去除,以调节其活性和细胞定位。用于研究蛋白质S-去棕榈酰化酶(蛋白质半胱氨酸S-棕榈酰化的硫酯酶“擦除器”)活性和调节的工具匮乏,这导致人们对动态S-棕榈酰化在调节蛋白质组脂化中的作用理解不完整。最近,我们开发了“去棕榈酰化探针”(DPPs),即一类小分子探针,在S-去棕榈酰化酶的酶促活性作用下会发出荧光。为了适用于活细胞,第一代DPPs依赖于较短的脂质底物(C8,而不是天然存在的C16),这提高了其溶解性和细胞通透性。然而,探针上使用非天然脂质底物可能会限制该方法的实用性。在此,我们介绍DPP家族的一个新成员DPP-5,它具有一个增加探针水溶性的阴离子羧酸盐官能团。DPP-5增强的水溶性允许使用天然的棕榈酰化底物(C16),而不是替代脂质。我们表明,DPP-5能够监测活的哺乳动物细胞中的内源性S-去棕榈酰化酶,并且它可以揭示由于脂质应激导致的S-去棕榈酰化水平的变化。DPP-5应该会被证明是一种通过动态S-去棕榈酰化来探究蛋白质组脂化调节的有用新工具。