Anderson Jessica L, Hrycyna Christine A
Department of Chemistry Purdue University 560 Oval Drive West Lafayette, IN 47907, USA.
Enzymes. 2006;24:245-72. doi: 10.1016/S1874-6047(06)80011-9. Epub 2007 Jun 4.
Proteins that terminate in a C-terminal CaaX motif undergo three sequential posttranslational modifications: isoprenylation of the cysteine residue, endoproteolysis of the -aaX residues, and methylation of the isoprenylated cysteine by an isoprenylcysteine carboxylmethyltransferase (Icmt). Among the proteins that contain this CaaX sequence are the Ras superfamily of G-proteins and other signal transduction proteins, the nuclear lamins, and the yeasta-factor mating pheromone. Icmt is a mechanistically intriguing enzyme that is unique among S-adenosyl-l-methionine (SAM)-dependent methyltransferases in that it is an integral membrane enzyme localized to the endoplasmic reticulum. It must also accommodate chemically diverse cofactor and substrate molecules; namely, the hydrophilic methyl-donating cofactor SAM and a lipophilic isoprenylated protein substrate, respectively. A complete picture of the cellular consequences of carboxylmethylation of isoprenylated proteins is still emerging. It is known, however, that methylation is critical for the proper localization of the CaaX protein Ras and may be essential for oncogenic transformation. Thus,Icmt may prove to be an excellent chemotherapeutic target. In this review, the structure and function of the family of Icmt enzymes are discussed, as well as recent advances in the development of small-molecule inhibitors of this key enzyme in the CaaX posttranslational processing pathway.
以C末端CaaX基序结尾的蛋白质会经历三个连续的翻译后修饰:半胱氨酸残基的异戊二烯化、-aaX残基的内切蛋白水解,以及由异戊二烯基半胱氨酸羧甲基转移酶(Icmt)对异戊二烯化半胱氨酸进行甲基化。含有这种CaaX序列的蛋白质包括G蛋白的Ras超家族和其他信号转导蛋白、核纤层蛋白,以及酵母a因子交配信息素。Icmt是一种在机制上很有趣的酶,在依赖S-腺苷-L-甲硫氨酸(SAM)的甲基转移酶中是独特的,因为它是一种定位于内质网的整合膜酶。它还必须容纳化学性质不同的辅因子和底物分子;即分别为亲水性的甲基供体辅因子SAM和疏水性的异戊二烯化蛋白质底物。异戊二烯化蛋白质羧甲基化的细胞后果的完整情况仍在显现。然而,已知甲基化对于CaaX蛋白Ras的正确定位至关重要,并且可能对致癌转化必不可少。因此,Icmt可能被证明是一个极好的化疗靶点。在这篇综述中,讨论了Icmt酶家族的结构和功能,以及在CaaX翻译后加工途径中这种关键酶的小分子抑制剂开发方面的最新进展。