Nolan Elizabeth M, Fischbach Michael A, Koglin Alexander, Walsh Christopher T
Department of Biological Chemistry and Molecular Pharmacology, Harvard Medical School, Boston, Massachusetts 02115, USA.
J Am Chem Soc. 2007 Nov 21;129(46):14336-47. doi: 10.1021/ja074650f. Epub 2007 Oct 31.
The present work reveals that four proteins, MceCDIJ, encoded by the MccE492 gene cluster are responsible for the remarkable post-translational tailoring of microcin E492 (MccE492), an 84-residue protein toxin secreted by Klebsiella pneumonaie RYC492 that targets neighboring Gram-negative species. This modification results in attachment of a linearized and monoglycosylated derivative of enterobactin, a nonribosomal peptide and iron scavenger (siderophore), to the MccE492m C-terminus. MceC and MceD derivatize enterobactin by C-glycosylation at the C5 position of a N-(2,3-dihydroxybenzoyl)serine (DHB-Ser) moiety and regiospecific hydrolysis of an ester linkage in the trilactone scaffold, respectively. MceI and MceJ form a protein complex that attaches C-glycosylated enterobactins to the C-terminal serine residue of both a C10 model peptide and full-length MccE492. In the enzymatic product, the C-terminal serine residue is covalently attached to the C4' oxygen of the glucose moiety. Nonenzymatic and base-catalyzed migration of the peptide to the C6' position affords the C6' glycosyl ester linkage observed in the mature toxin, MccE492m, isolated from bacterial cultures.
目前的研究表明,由MccE492基因簇编码的四种蛋白质MceCDIJ,负责对微小菌素E492(MccE492)进行显著的翻译后修饰。MccE492是肺炎克雷伯菌RYC492分泌的一种由84个氨基酸组成的蛋白质毒素,作用于邻近的革兰氏阴性菌。这种修饰导致将肠杆菌素(一种非核糖体肽和铁载体)的线性化和单糖基化衍生物连接到MccE492的C末端。MceC和MceD分别通过对N-(2,3-二羟基苯甲酰基)丝氨酸(DHB-Ser)部分的C5位进行C-糖基化以及对三内酯支架中酯键进行区域特异性水解来衍生化肠杆菌素。MceI和MceJ形成一种蛋白质复合物,将C-糖基化的肠杆菌素连接到C10模型肽和全长MccE492的C末端丝氨酸残基上。在酶促产物中,C末端丝氨酸残基共价连接到葡萄糖部分的C4'氧上。肽向C6'位置的非酶促和碱催化迁移产生了从细菌培养物中分离出的成熟毒素MccE492m中观察到的C6'糖基酯键。