Chew A, Buck E A, Peretz S, Sirugo G, Rinaldo P, Isaya G
Department of Genetics, Yale University School of Medicine, New Haven, Connecticut 06510, USA.
Genomics. 1997 Mar 15;40(3):493-6. doi: 10.1006/geno.1996.4586.
The mitochondrial intermediate peptidase of Saccharomyces cerevisiae (YMIP) is a component of the yeast mitochondrial protein import machinery critically involved in the biogenesis of the oxidative phosphorylation (OXPHOS) system. This leader peptidase removes specific octapeptides from the amino terminus of nuclear-encoded OXPHOS subunits and components of the mitochondrial genetic apparatus. To address the biologic role of the human peptidase [MIPEP gene, HMIP polypeptide], we have initiated its molecular and functional characterization. A full-length cDNA was isolated by screening a human liver library using a rat MIP (RMIP) cDNA as a probe. The encoded protein contained a typical mitochondrial leader peptide and showed 92 and 54% homology to RMIP and YMIP, respectively. A survey of human mitochondrial protein precursors revealed that, similar to YMIP, HMIP is primarily involved in the maturation of OXPHOS-related proteins. Northern analysis showed that the MIPEP gene is differentially expressed in human tissues, with the highest levels of expression in the heart, skeletal muscle, and pancreas, three organ systems that are frequently affected in OXPHOS disorders. Using fluorescence in situ hybridization, the MIPEP locus was assigned to 13q12. This information offers the possibility of testing the potential involvement of HMIP in the pathophysiology of nuclear-driven OXPHOS disorders.
酿酒酵母的线粒体中间肽酶(YMIP)是酵母线粒体蛋白质导入机制的一个组成部分,在氧化磷酸化(OXPHOS)系统的生物合成中起关键作用。这种前导肽酶从核编码的OXPHOS亚基和线粒体遗传装置的组件的氨基末端去除特定的八肽。为了研究人类肽酶[MIPEP基因,HMIP多肽]的生物学作用,我们开始了其分子和功能特性的研究。通过使用大鼠MIP(RMIP)cDNA作为探针筛选人肝文库,分离出全长cDNA。编码的蛋白质含有典型的线粒体前导肽,与RMIP和YMIP的同源性分别为92%和54%。对人类线粒体蛋白质前体的调查显示,与YMIP类似,HMIP主要参与OXPHOS相关蛋白质的成熟。Northern分析表明,MIPEP基因在人类组织中差异表达,在心脏、骨骼肌和胰腺中表达水平最高,这三个器官系统在OXPHOS疾病中经常受到影响。使用荧光原位杂交,将MIPEP基因座定位到13q12。这些信息为测试HMIP在核驱动的OXPHOS疾病病理生理学中的潜在作用提供了可能性。