Gök Caglar, Main Alice, Gao Xing, Kerekes Zsombor, Plain Fiona, Kuo Chien-Wen, Robertson Alan D, Fraser Niall J, Fuller William
Institute of Cardiovascular & Medical Sciences, Sir James Black Building, University of Glasgow, Glasgow, G12 8QQ, United Kingdom.
School of Medicine, Ninewells Hospital, University of Dundee, Dundee, DD1 9SY, United Kingdom.
Cell Calcium. 2021 Apr 8;97:102408. doi: 10.1016/j.ceca.2021.102408.
Catalyzed by zDHHC-PAT enzymes and reversed by thioesterases, protein palmitoylation is the only post-translational modification recognized to regulate the sodium/calcium exchanger NCX1. NCX1 palmitoylation occurs at a single site at position 739 in its large regulatory intracellular loop. An amphipathic ɑ-helix between residues 740-756 is a critical for NCX1 palmitoylation. Given the rich background of the structural elements involving in NCX1 palmitoylation, the molecular basis of NCX1 palmitoylation is still relatively poorly understood. Here we found that (1) the identity of palmitoylation machinery of NCX1 controls its spatial organization within the cell, (2) the NCX1 amphipathic ɑ-helix directly interacts with zDHHC-PATs, (3) NCX1 is still palmitoylated when it is arrested in either Golgi or ER, indicating that NCX1 is a substrate for multiple zDHHC-PATs, (4) the thioesterase APT1 but not APT2 as a part of NCX1-depalmitoylation machinery governs subcellular organization of NCX1, (5) APT1 catalyzes NCX1 depalmitoylation in the Golgi but not in the ER. We also report that NCX2 and NCX3 are dually palmitoylated, with important implications for substrate recognition and enzyme catalysis by zDHHC-PATs. Our results could support new molecular or pharmacological strategies targeting the NCX1 palmitoylation and depalmitoylation machinery.
在zDHHC-PAT酶的催化下并由硫酯酶逆转,蛋白质棕榈酰化是唯一已知可调节钠/钙交换蛋白NCX1的翻译后修饰。NCX1的棕榈酰化发生在其大的调节性细胞内环中第739位的单个位点。740-756位残基之间的两亲性α-螺旋对NCX1的棕榈酰化至关重要。鉴于涉及NCX1棕榈酰化的结构元件背景丰富,NCX1棕榈酰化的分子基础仍相对了解不足。在这里,我们发现:(1)NCX1棕榈酰化机制的特性控制其在细胞内的空间组织;(2)NCX1两亲性α-螺旋直接与zDHHC-PATs相互作用;(3)当NCX1在高尔基体或内质网中滞留时仍会发生棕榈酰化,这表明NCX1是多种zDHHC-PATs的底物;(4)硫酯酶APT1而非APT2作为NCX1去棕榈酰化机制的一部分,决定了NCX1的亚细胞组织;(5)APT1在高尔基体中催化NCX1的去棕榈酰化,但在内质网中则不然。我们还报告说,NCX2和NCX3被双重棕榈酰化,这对zDHHC-PATs的底物识别和酶催化具有重要意义。我们的结果可能支持针对NCX1棕榈酰化和去棕榈酰化机制的新分子或药理学策略。