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由hp0857编码的幽门螺杆菌26695景天庚酮糖7-磷酸异构酶的功能表征及其与脂多糖生物合成和黏附的关联。

Functional characterization of Helicobacter pylori 26695 sedoheptulose 7-phosphate isomerase encoded by hp0857 and its association with lipopolysaccharide biosynthesis and adhesion.

作者信息

Yu Chung-Kai, Wang Chun-Jen, Chew Yongyu, Wang Po-Chuan, Yin Hsien-Sheng, Kao Mou-Chieh

机构信息

Institute of Molecular Medicine & Department of Life Science, College of Life Sciences, National Tsing Hua University, No. 101, Sec. 2, Kuang-Fu Road, Hsinchu 30013, Taiwan.

Department of Gastroenterology, MacKay Memorial Hospital, No. 690, Sec. 2, Kuang-Fu Road, Hsinchu 30071, Taiwan.

出版信息

Biochem Biophys Res Commun. 2016 Sep 2;477(4):794-800. doi: 10.1016/j.bbrc.2016.06.137. Epub 2016 Jun 28.

Abstract

Helicobacter pylori is a notorious human pathogen and the appearance of antibiotic resistance of this bacterium has posed a serious threat to human health. Lipopolysaccharide (LPS) is a key virulence factor and plays important roles in pathogenesis of H. pylori infection. Sedoheptulose 7-phosphate isomerase (GmhA), as an enzyme participating in the first step of heptose biosynthesis, is indispensable for the formation of inner core oligosaccharide of LPS. In this study, we cloned one putative gmhA ortholog, hp0857, from H. pylori 26695 and overexpressed it in Eschericha coli. Based on the results of molecular weight determination, the recombinant HP0857 is likely a homodimer. Analysis of enzymatic kinetic properties of this protein confirmed that hp0857 is indeed encoded a phosphoheptose isomerase which can utilize sedoheptulose 7-phosphate as the substrate in the ADP-L-glycero-D-manno-heptose (ADP- L,D-Hep) biosynthesis pathway. We also generated an HP0857 knockout mutant and explored its phenotypic changes. This mutant exhibited a decreased growth rate and displayed a "deep rough" type of LPS structure. In addition, it also had a slight decrease in its motility and was more susceptible to hydrophobic antibiotic novobiocin and detergents Triton X-100 and SDS. Furthermore, the adhesive capacity of the HP0857 knockout mutant to AGS cells was reduced significantly, and most of the infected cells didn't show a classic hummingbird phenotype. However, complementation of the HP0857 knockout mutation restored most of these phenotypic changes. In conclusion, we demonstrated that HP0857 protein is essential for inner core biosynthesis of H. pylori LPS and is a potential target for developing new antimicrobial agents against H. pylori infection.

摘要

幽门螺杆菌是一种臭名昭著的人类病原体,该细菌抗生素耐药性的出现对人类健康构成了严重威胁。脂多糖(LPS)是一种关键的毒力因子,在幽门螺杆菌感染的发病机制中发挥着重要作用。景天庚酮糖7-磷酸异构酶(GmhA)作为参与庚糖生物合成第一步的一种酶,对于LPS内核寡糖的形成不可或缺。在本研究中,我们从幽门螺杆菌26695中克隆了一个假定的gmhA直系同源基因hp0857,并在大肠杆菌中进行了过表达。基于分子量测定结果,重组HP0857可能是一个同型二聚体。对该蛋白的酶动力学特性分析证实,hp0857确实编码一种磷酸庚糖异构酶,其能够在ADP-L-甘油-D-甘露庚糖(ADP-L,D-Hep)生物合成途径中利用景天庚酮糖7-磷酸作为底物。我们还构建了一个HP0857基因敲除突变体,并探究了其表型变化。该突变体生长速率降低,呈现出“深粗糙”型的LPS结构。此外,其运动性也略有下降,并且对疏水性抗生素新生霉素以及去污剂Triton X-100和SDS更敏感。此外,HP0857基因敲除突变体对AGS细胞的黏附能力显著降低,并且大多数被感染细胞未表现出典型的蜂鸟样表型。然而,对HP0857基因敲除突变进行互补恢复了大部分这些表型变化。总之,我们证明了HP0857蛋白对于幽门螺杆菌LPS的内核生物合成至关重要,并且是开发针对幽门螺杆菌感染的新型抗菌剂的潜在靶点。

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