Vetro Joseph A, Chang Yie-Hwa
Edward A. Doisy Department of Biochemistry and Molecular Biology, St. Louis University Health Sciences Center, St. Louis, Missouri 63104, USA.
J Cell Biochem. 2002;85(4):678-88. doi: 10.1002/jcb.10161.
Methionine aminopeptidase type 1 (MetAP1) cotranslationally removes N-terminal methionine from nascent polypeptides, when the second residue in the primary structure is small and uncharged. Eukaryotic MetAP1 has an N-terminal zinc finger domain not found in prokaryotic MetAPs. We hypothesized that the zinc finger domain mediates the association of MetAP1 with the ribosomes and have reported genetic evidence that it is important for the normal function of MetAP1 in vivo. In this study, the intracellular role of the zinc finger domain in yeast MetAP1 function was examined. Wild-type MetAP1 expressed in a yeast map1 null strain removed 100% of N-terminal methionine from a reporter protein, while zinc finger mutants removed only 31-35%. Ribosome profiles of map1 null expressing wild-type MetAP1 or one of three zinc finger mutants were compared. Wild-type MetAP1 was found to be an 80S translational complex-associated protein that primarily associates with the 60S subunit. Deletion of the zinc finger domain did not significantly alter the ribosome profile distribution of MetAP1. In contrast, single point mutations in the first or second zinc finger motif disrupted association of MetAP1 with the 60S subunit and the 80S translational complex. Together, these results indicate that the zinc finger domain is essential for the normal processing function of MetAP1 in vivo and suggest that it may be important for the proper functional alignment of MetAP1 on the ribosomes.
1型甲硫氨酸氨肽酶(MetAP1)在新生多肽的二级结构中的第二个残基较小且不带电荷时,会共翻译去除其N端甲硫氨酸。真核生物的MetAP1具有原核生物MetAP中未发现的N端锌指结构域。我们推测锌指结构域介导MetAP1与核糖体的结合,并已报道了遗传证据,表明其对MetAP1在体内的正常功能很重要。在本研究中,研究了锌指结构域在酵母MetAP1功能中的细胞内作用。在酵母map1缺失菌株中表达的野生型MetAP1从报告蛋白中去除了100%的N端甲硫氨酸,而锌指突变体仅去除了31 - 35%。比较了表达野生型MetAP1或三种锌指突变体之一的map1缺失菌株的核糖体谱。发现野生型MetAP1是一种与80S翻译复合物相关的蛋白质,主要与60S亚基结合。锌指结构域的缺失并未显著改变MetAP1的核糖体谱分布。相反,第一个或第二个锌指基序中的单点突变破坏了MetAP1与60S亚基和80S翻译复合物的结合。总之,这些结果表明锌指结构域对于MetAP1在体内的正常加工功能至关重要,并表明它可能对MetAP1在核糖体上的正确功能排列很重要。