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A mammalian protein homologous to fructosamine-3-kinase is a ketosamine-3-kinase acting on psicosamines and ribulosamines but not on fructosamines.

机译:与果糖胺-3-激酶同源的哺乳动物蛋白是作用于角豆胺和核糖胺而不是果糖胺的酮胺-3-激酶。

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摘要

Fructosamine-3-kinase (FN3K) is an enzyme that appears to be responsible for the removal of fructosamines from proteins. In this study, we report the sequence of human and mouse cDNAs encoding proteins sharing 65% sequence identity with FN3K. The genes encoding FN3K and FN3K-related protein (FN3K-RP) are present next to each other on human chromosome 17q25, and they both have a similar 6-exon structure. Northern blots of mouse tissues RNAs indicate a high level of expression of both genes in bone marrow, brain, kidneys, and spleen. Human FN3K-RP was transfected in human embryonic kidney (HEK) cells, and the expressed protein was partially purified by chromatography on Blue Sepharose. Unlike FN3K, FN3K-RP did not phosphorylate fructoselysine, 1-deoxy-1-morpholino-fructose, or lysozyme glycated with glucose. In a more systematic screening for potential substrates for FN3K-RP, we found, however, that both enzymes phosphorylated ketosamines with a D-configuration in C3 (psicoselysine, 1-deoxy-1-morpholino-psicose, 1-deoxy-1-morpholino-ribulose, lysozyme glycated with allose-the C3 epimer of glucose, or with ribose). Tandem mass spectrometry and nuclear magnetic resonance analysis of the product of phosphorylation of 1-deoxy-1-morpholino-psicose by FN3K-RP indicated that this enzyme phosphorylates the third carbon of the sugar moiety. These results indicate that FN3K-RP is a ketosamine-3-kinase (ketosamine-3-kinase 2). This enzyme presumably plays a role in freeing proteins from ribulosamines or psicosamines, which might arise in a several step process, from the reaction of amines with glucose and/or glycolytic intermediates. This role is shared by fructosamine-3-kinase (ketosamine-3-kinase 1), which has, in addition, the unique capacity to phosphorylate fructosamines.
机译:果糖胺-3-激酶(FN3K)是一种似乎负责从蛋白质中去除果糖胺的酶。在这项研究中,我们报告了编码与FN3K共享65%序列同一性的蛋白质的人和小鼠cDNA序列。编码FN3K和FN3K相关蛋白(FN3K-RP)的基因在人染色体17q25上彼此相邻存在,并且它们都具有相似的6外显子结构。小鼠组织的Northern印迹RNA指示两种基因在骨髓,脑,肾脏和脾脏中的高表达。将人FN3K-RP转染到人胚胎肾(HEK)细胞中,并通过在Blue Sepharose上进行色谱纯化部分表达的蛋白。与FN3K不同,FN3K-RP不会磷酸化果糖赖氨酸,1-脱氧-1-吗啉代果糖或糖基化的葡萄糖溶菌酶。但是,在对FN3K-RP的潜在底物进行更系统的筛选时,我们发现这两种酶都在C3中磷酸化了具有D-构型的酮胺(psyoselysine,1-deoxy-1-morpholino-psicose,1-deoxy-1-morpholino -核糖,溶菌酶糖基化的糖(C3差向异构体,或核糖)。串联质谱法和FN3K-RP对1-deoxy-1-morpholino-psicose磷酸化产物的核磁共振分析表明,该酶使糖部分的第三碳磷酸化。这些结果表明FN3K-RP是酮胺-3-激酶(酮胺-3-激酶2)。该酶大概在使蛋白质从核糖胺或psicosamines释放中起作用,核糖胺或psicosamines可能是由于胺与葡萄糖和/或糖酵解中间体的反应而在多个步骤中产生的。果糖胺3激酶(酮糖胺3激酶1)具有这种作用,此外,果糖胺3激酶具有使果糖胺磷酸化的独特能力。

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