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锰诱导弯曲杆菌磷酸谷氨酰胺胞苷转移酶催化反应中的底物混杂现象。

Manganese-Induced Substrate Promiscuity in the Reaction Catalyzed by Phosphoglutamine Cytidylyltransferase from Campylobacter jejuni.

机构信息

Department of Biochemistry & Biophysics , Texas A&M University , College Station , Texas 77843 , United States.

Department of Chemistry , Texas A&M University , College Station , Texas 77843 , United States.

出版信息

Biochemistry. 2019 Apr 23;58(16):2144-2151. doi: 10.1021/acs.biochem.9b00189. Epub 2019 Apr 9.

Abstract

The leading cause of bacterial gastroenteritis, Campylobacter jejuni, is a Gram-negative pathogen that contains a unique O-methyl phosphoramidate (MeOPN) on its capsular polysaccharide. Previously, MeOPN has been linked to the evasion of host immune responses and serum resistance. Despite the involvement of MeOPN in pathogenicity, the complete biosynthesis of this modification is unknown; however, the first four enzymatic steps have been elucidated. The second enzyme in this pathway, Cj1416, is a CTP/phosphoglutamine cytididylyltransferase that catalyzes the displacement of pyrophosphate from MgCTP by l-glutamine phosphate to form CDP-l-glutamine. Initially, Cj1416 was predicted to use phosphoramidate to form cytidine diphosphoramidate, but no activity was detected with MgATP as a substrate. However, in the presence of MnCTP, Cj1416 can directly catalyze the formation of cytidine diphosphoramidate from phosphoramidate and MnCTP. Here we characterize the manganese-induced promiscuity of Cj1416. In the presence of Mn, Cj1416 catalyzes the formation of 12 different reaction products using l-glutamine phosphate, phosphoramidate, methyl phosphate, methyl phosphonate, phosphate, arsenate, ethanolamine phosphate, glycerol-1-phosphate, glycerol-2-phosphate, serinol phosphate, l-serine phosphate, or 3-phospho-d-glycerate as the nucleophile to displace pyrophosphate from CTP.

摘要

空肠弯曲菌是细菌性肠胃炎的主要病原体,它的荚膜多糖上含有独特的 O-甲基膦酸酰胺(MeOPN)。此前,MeOPN 与逃避宿主免疫反应和血清抗性有关。尽管 MeOPN 参与了致病性,但这种修饰的完整生物合成过程尚不清楚;然而,已经阐明了前四个酶促步骤。该途径中的第二个酶 Cj1416 是一种 CTP/磷酸谷氨酰胺胞苷酰转移酶,可催化 l-谷氨酰胺磷酸取代 MgCTP 中的焦磷酸,形成 CDP-l-谷氨酰胺。最初,Cj1416 被预测使用膦酰胺形成胞苷二磷酸膦酰胺,但没有检测到以 MgATP 为底物的活性。然而,在 MnCTP 的存在下,Cj1416 可以直接催化从膦酰胺和 MnCTP 形成胞苷二磷酸膦酰胺。在这里,我们描述了 Cj1416 的锰诱导的混杂性。在 Mn 的存在下,Cj1416 可以使用 l-谷氨酰胺磷酸、膦酰胺、甲基磷酸、甲基膦酸、磷酸、砷酸盐、乙醇胺磷酸、甘油-1-磷酸、甘油-2-磷酸、丝氨酸磷酸、l-丝氨酸磷酸或 3-磷酸-d-甘油酸作为亲核试剂,催化从 CTP 中置换焦磷酸,形成 12 种不同的反应产物。

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