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基于结构的脂多糖 O-抗原链长调控因子研究揭示了对模式长度控制至关重要的区域。

Structure-guided investigation of lipopolysaccharide O-antigen chain length regulators reveals regions critical for modal length control.

机构信息

Department of Biochemistry, McGill University, Montréal, Québec, Canada.

出版信息

J Bacteriol. 2011 Aug;193(15):3710-21. doi: 10.1128/JB.00059-11. Epub 2011 Jun 3.

DOI:10.1128/JB.00059-11
PMID:21642455
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3147518/
Abstract

The O-antigen component of the lipopolysaccharide (LPS) represents a population of polysaccharide molecules with nonrandom (modal) chain length distribution. The number of the repeat O units in each individual O-antigen polymer depends on the Wzz chain length regulator, an inner membrane protein belonging to the polysaccharide copolymerase (PCP) family. Different Wzz proteins confer vastly different ranges of modal lengths (4 to >100 repeat units), despite having remarkably conserved structural folds. The molecular mechanism responsible for the selective preference for a certain number of O units is unknown. Guided by the three-dimensional structures of PCPs, we constructed a panel of chimeric molecules containing parts of two closely related Wzz proteins from Salmonella enterica and Shigella flexneri which confer different O-antigen chain length distributions. Analysis of the O-antigen length distribution imparted by each chimera revealed the region spanning amino acids 67 to 95 (region 67 to 95), region 200 to 255, and region 269 to 274 as primarily affecting the length distribution. We also showed that there is no synergy between these regions. In particular, region 269 to 274 also influenced chain length distribution mediated by two distantly related PCPs, WzzB and FepE. Furthermore, from the 3 regions uncovered in this study, region 269 to 274 appeared to be critical for the stability of the oligomeric form of Wzz, as determined by cross-linking experiments. Together, our data suggest that chain length determination depends on regions that likely contribute to stabilize a supramolecular complex.

摘要

脂多糖 (LPS) 的 O-抗原组分代表了多糖分子群体,其具有非随机(模态)链长分布。每个个体 O-抗原聚合物中的重复 O 单位数量取决于 Wzz 链长调节剂,这是一种属于多糖共聚合酶 (PCP) 家族的内膜蛋白。尽管具有显著保守的结构折叠,但不同的 Wzz 蛋白赋予了截然不同的模态长度范围(4 到 >100 个重复单位)。负责对特定数量 O 单位的选择性偏好的分子机制尚不清楚。受 PCP 三维结构的指导,我们构建了一组嵌合分子,这些分子包含来自沙门氏菌和福氏志贺菌的两种密切相关的 Wzz 蛋白的部分,它们赋予不同的 O-抗原链长分布。分析每个嵌合体赋予的 O-抗原长度分布揭示了跨越氨基酸 67 到 95 的区域(区域 67 到 95)、区域 200 到 255 和区域 269 到 274 主要影响长度分布。我们还表明,这些区域之间没有协同作用。特别是,区域 269 到 274 还影响由两个远缘 PCPs(WzzB 和 FepE)介导的链长分布。此外,在本研究中发现的 3 个区域中,区域 269 到 274 似乎对于 Wzz 寡聚形式的稳定性至关重要,这是通过交联实验确定的。总之,我们的数据表明,链长确定取决于可能有助于稳定超分子复合物的区域。

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本文引用的文献

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ABC transporters involved in export of cell surface glycoconjugates.ABC 转运蛋白参与细胞表面糖缀合物的输出。
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Mutagenesis and chemical cross-linking suggest that Wzz dimer stability and oligomerization affect lipopolysaccharide O-antigen modal chain length control.诱变和化学交联表明,Wzz 二聚体稳定性和寡聚化影响脂多糖 O-抗原模态链长控制。
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Helicobacter pylori lipopolysaccharide is synthesized via a novel pathway with an evolutionary connection to protein N-glycosylation.幽门螺旋杆菌脂多糖通过一种新颖的途径合成,这种途径与蛋白质 N-糖基化在进化上有联系。
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O-antigen delays lipopolysaccharide recognition and impairs antibacterial host defense in murine intestinal epithelial cells.O抗原延迟脂多糖识别并损害小鼠肠道上皮细胞中的抗菌宿主防御。
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Burkholderia cenocepacia O antigen lipopolysaccharide prevents phagocytosis by macrophages and adhesion to epithelial cells.洋葱伯克霍尔德菌O抗原脂多糖可阻止巨噬细胞的吞噬作用并防止其黏附于上皮细胞。
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Establishment of systemic Brucella melitensis infection through the digestive tract requires urease, the type IV secretion system, and lipopolysaccharide O antigen.通过消化道建立全身性布鲁氏菌感染需要尿素酶、IV型分泌系统和脂多糖O抗原。
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