Fortpied Juliette, Gemayel Rita, Vertommen Didier, Van Schaftingen Emile
Christian de Duve Institute of Cellular Pathology, Université Catholique de Louvain, Avenue Hippocrate 75, B-1200 Brussels, Belgium.
Biochem J. 2007 Aug 15;406(1):139-45. doi: 10.1042/BJ20061485.
Ribulosamines, which are substrates for the deglycating enzyme fructosamine-3-kinase-related protein, are presumably formed intracellularly through glycation of proteins with ribose 5-phosphate followed by dephosphorylation of resulting RN5Ps (ribulosamine 5-phosphates) by a putative RN5Pase (ribulosamine-5-phosphatase). Ribose 5-phosphate is known to be a potent glycating agent and we show in the present study that it reacts approximately 10 and 80-fold more rapidly with protein than ribose and glucose respectively. We also show that tissue extracts and, most particularly, erythrocyte extracts contain a protein-RN5Pase. We have purified this enzyme from human erythrocytes to near homogeneity and shown it to correspond to LMWPTP-A [low-molecular-mass ('weight') protein tyrosine phosphatase-A]. Human recombinant LMWPTP-A displayed an RN5Pase activity that was higher than its tyrosine phosphatase activity, indicating that this phosphatase may participate in protein deglycation, a new form of protein repair.
核糖胺是去糖化酶果糖胺-3-激酶相关蛋白的底物,推测是通过蛋白质与5-磷酸核糖糖基化,随后由一种假定的核糖胺-5-磷酸酶(RN5Pase)将生成的核糖胺5-磷酸(RN5Ps)去磷酸化,在细胞内形成的。已知5-磷酸核糖是一种强效糖基化剂,我们在本研究中表明,它与蛋白质反应的速度分别比核糖和葡萄糖快约10倍和80倍。我们还表明,组织提取物,尤其是红细胞提取物含有一种蛋白质-RN5Pase。我们已从人红细胞中纯化该酶至接近均一,并表明它对应于LMWPTP-A [低分子量(‘重量’)蛋白质酪氨酸磷酸酶-A]。人重组LMWPTP-A显示出高于其酪氨酸磷酸酶活性的RN5Pase活性,表明这种磷酸酶可能参与蛋白质去糖化,这是一种新的蛋白质修复形式。