Dunphy J T, Greentree W K, Manahan C L, Linder M E
Department of Cell Biology and Physiology, Washington University School of Medicine, St. Louis, Missouri 63110, USA.
J Biol Chem. 1996 Mar 22;271(12):7154-9. doi: 10.1074/jbc.271.12.7154.
Heterotrimeric G proteins are covalently modified by lipids. Myristoylation of G-protein alpha subunits and prenylation of gamma subunits are stable modifications. In contrast, palmitoylation of alpha subunits is dynamic and thus has the potential for regulating protein function. Indeed, receptor activation of Gs increases palmitate turnover on the alpha subunit, presumably by stimulating deacylation. The enzymes that catalyze reversible palmitoylation of G-protein alpha subunits have not been characterized. Here we report the identification of a palmitoyl-CoA:protein S-palmitoyltransferase activity that acylates G-protein alpha subunits in vitro. Palmitoyltransferase activity is membrane-associated and requires detergent for solubilization. The preferred G-protein substrate for the enzyme activity is the alpha subunit in the context of the heterotrimer. Both myristoylated and nonmyristoylated G-protein alpha subunits are recognized as substrates. The palmitoyltransferase activity demonstrates a modest preference for palmitoyl-CoA over other fatty acyl-CoA substrates. Palmitoyltransferase activity is high in plasma membrane and present at low or undetectable levels in Golgi, endoplasmic reticulum, and mitochondria of rat liver. The subcellular localization of this enzyme activity is consistent with a role for regulated cycles of acylation and deacylation accompanying activation of G-protein signal transduction pathways.
异三聚体G蛋白通过脂质进行共价修饰。G蛋白α亚基的肉豆蔻酰化和γ亚基的异戊二烯化是稳定的修饰。相比之下,α亚基的棕榈酰化是动态的,因此具有调节蛋白质功能的潜力。实际上,Gs的受体激活增加了α亚基上棕榈酸酯的周转,推测是通过刺激脱酰作用实现的。催化G蛋白α亚基可逆棕榈酰化的酶尚未得到表征。在此我们报告鉴定出一种棕榈酰辅酶A:蛋白质S - 棕榈酰转移酶活性,其在体外使G蛋白α亚基酰化。棕榈酰转移酶活性与膜相关,需要去污剂来溶解。该酶活性的首选G蛋白底物是异三聚体形式的α亚基。肉豆蔻酰化和未肉豆蔻酰化的G蛋白α亚基均被识别为底物。棕榈酰转移酶活性对棕榈酰辅酶A的偏好略高于其他脂肪酰辅酶A底物。棕榈酰转移酶活性在质膜中较高,而在大鼠肝脏的高尔基体、内质网和线粒体中含量较低或无法检测到。这种酶活性的亚细胞定位与伴随G蛋白信号转导途径激活的酰化和脱酰化调节循环的作用一致。