Graduate School of Bionics, Computer and Media Sciences, Tokyo University of Technology, Hachioji, Japan.
Appl Biochem Biotechnol. 2013 Jun;170(3):710-7. doi: 10.1007/s12010-013-0229-8. Epub 2013 Apr 23.
Fructosamine-6-kinases (FN6Ks) that catalyze phosphorylation of glycated amino acids, i.e., fructosyl amino acids (FAs), have been shown as a potential recognition element for glycated protein detection. However, there are only two available FN6Ks: those from Escherichia coli which is specific for ε-fructosyl lysine (ε-FK) and Bacillus subtilis which recognizes both ε-FK and α-FA as substrates. In this study, we characterized an FN6K homologue isolated from Arthrobacter, some of whose species are reported to assimilate FA. The BLAST searches of Arthrobacter genomic database, using the bacterial FN6K primary structure information, revealed the presence of an FN6K homologue in Arthrobacter aurescens TC1 strain. Indeed, enzymatic assays confirmed that the putative FN6K from A. aurescens is an FN6K that is specific for ε-FK, although the primary sequence alignments showed similarity of A. aurescens FN6Ks with FN6Ks from B. subtilis and E. coli at the same level. In this study, we describe for the first time the presence of FN6K in Arthrobacter spp. and ε-FK-specific degradation pathway from Gram-positive bacteria, providing important information for the development of FA-recognizing molecules as well as for the FA assimilation system in bacteria.
果糖胺-6-激酶(FN6Ks)可催化糖化氨基酸,即果糖基氨基酸(FAs)的磷酸化,已被证明是糖化蛋白检测的潜在识别元件。然而,目前只有两种可用的 FN6Ks:一种来自大肠杆菌,特异性识别ε-果糖基赖氨酸(ε-FK),另一种来自枯草芽孢杆菌,可识别ε-FK 和 α-FA 作为底物。在这项研究中,我们对从节杆菌属中分离出的一种 FN6K 同源物进行了表征,一些节杆菌属的物种被报道可同化 FA。使用细菌 FN6K 一级结构信息对节杆菌属基因组数据库进行 BLAST 搜索,发现 A. aurescens TC1 菌株中存在 FN6K 同源物。事实上,酶促测定证实,来自 A. aurescens 的推定 FN6K 是一种特异性识别 ε-FK 的 FN6K,尽管一级序列比对显示 A. aurescens FN6Ks 与枯草芽孢杆菌和大肠杆菌的 FN6Ks 在同一水平上具有相似性。在这项研究中,我们首次描述了节杆菌属中存在 FN6K 以及革兰氏阳性菌中 ε-FK 特异性降解途径,为开发 FA 识别分子以及细菌中 FA 同化系统提供了重要信息。