Gómez Daniel, Lucas-Elío Patricia, Sanchez-Amat Antonio, Solano Francisco
Department of Genetics and Microbiology, University of Murcia, 30100 Murcia, Spain.
Biochim Biophys Acta. 2006 Oct;1764(10):1577-85. doi: 10.1016/j.bbapap.2006.08.014. Epub 2006 Sep 3.
The melanogenic marine bacterium M. mediterranea synthesizes marinocine, a protein with antibacterial activity. We cloned the gene coding for this protein and named it lodA [P. Lucas-Elío, P. Hernández, A. Sanchez-Amat, F. Solano, Purification and partial characterization of marinocine, a new broad-spectrum antibacterial protein produced by Marinomonas mediterranea. Biochim. Biophys. Acta 1721 (2005) 193-203; P. Lucas-Elío, D. Gómez, F. Solano, A. Sanchez-Amat, The antimicrobial activity of marinocine, synthesized by M. mediterranea, is due to the hydrogen peroxide generated by its lysine oxidase activity. J. Bacteriol. 188 (2006) 2493-2501]. Now, we show that this protein is a new type of lysine oxidase which catalyzes the oxidative deamination of free L-lysine into 6-semialdehyde 2-aminoadipic acid, ammonia and hydrogen peroxide. This new enzyme is compared to other enzymes related to lysine transformation. Two different groups have been used for comparison. Enzymes in the first group lead to 2-aminoadipic acid as a final product. The second one would be enzymes catalyzing the oxidative deamination of lysine releasing H2O2, namely lysine-alpha-oxidase (LalphaO) and lysyl oxidase (Lox). Kinetic properties, substrate specificity and inhibition pattern show clear differences with all above mentioned lysine-related enzymes. Thus, we propose to rename this enzyme lysine-epsilon-oxidase (lod for the gene) instead of marinocine. Lod shows high stereospecificity for free L-lysine, it is inhibited by substrate analogues, such as cadaverine and 6-aminocaproic acid, and also by beta-aminopropionitrile, suggesting the existence of a tyrosine-derived quinone cofactor at its active site.
产黑素海洋细菌地中海海单胞菌(Marinomonas mediterranea)能合成具有抗菌活性的蛋白海菌素(marinocine)。我们克隆了编码该蛋白的基因并将其命名为lodA[P.卢卡斯 - 埃利奥(P. Lucas-Elío)、P.埃尔南德斯(P. Hernández)、A.桑切斯 - 阿马特(A. Sanchez-Amat)、F.索拉诺(F. Solano),海菌素的纯化及部分特性鉴定,海菌素是地中海海单胞菌产生的一种新型广谱抗菌蛋白。生物化学与生物物理学报1721(2005)193 - 203;P.卢卡斯 - 埃利奥、D.戈麦斯(D. Gómez)、F.索拉诺、A.桑切斯 - 阿马特,地中海海单胞菌合成的海菌素的抗菌活性归因于其赖氨酸氧化酶活性产生的过氧化氢。细菌学杂志188(2006)2493 - 2501]。现在,我们证明该蛋白是一种新型赖氨酸氧化酶,它催化游离L - 赖氨酸氧化脱氨生成6 - 半醛2 - 氨基己二酸、氨和过氧化氢。将这种新酶与其他与赖氨酸转化相关的酶进行了比较。使用了两个不同的组进行比较。第一组中的酶以2 - 氨基己二酸作为最终产物。第二组是催化赖氨酸氧化脱氨释放H2O2的酶,即赖氨酸 - α - 氧化酶(LalphaO)和赖氨酰氧化酶(Lox)。动力学性质、底物特异性和抑制模式与上述所有赖氨酸相关酶均存在明显差异。因此,我们建议将该酶重新命名为赖氨酸 - ε - 氧化酶(基因名为lod)而非海菌素。Lod对游离L - 赖氨酸具有高立体特异性,它受到底物类似物如尸胺和6 - 氨基己酸以及β - 氨基丙腈的抑制,这表明其活性位点存在酪氨酸衍生的醌辅因子。