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分枝杆菌截短糖脂及其改变的免疫学性质。

A truncated lipoglycan from mycobacteria with altered immunological properties.

机构信息

School of Biosciences, University of Birmingham, Birmingham B15 2TT, United Kingdom.

出版信息

Proc Natl Acad Sci U S A. 2010 Feb 9;107(6):2634-9. doi: 10.1073/pnas.0915082107. Epub 2010 Jan 25.

DOI:10.1073/pnas.0915082107
PMID:20133807
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2823879/
Abstract

Maintenance of cell-wall integrity in Mycobacterium tuberculosis is essential and is the target of several antitubercular drugs. For example, ethambutol targets arabinogalactan and lipoarabinomannan (LAM) biosynthesis through the inhibition of several arabinofuranosyltransferases. Apart from their role in cell-wall integrity, mycobacterial LAMs also exhibit important immunomodulatory activities. Here we report the isolation and detailed structural characterization of a unique LAM molecule derived from Mycobacterium smegmatis deficient in the arabinofuranosyltransferase AftC (AftC-LAM). This mutant LAM expresses a severely truncated arabinan domain completely devoid of 3,5-Araf-branching residues, revealing an intrinsic involvement of AftC in the biosynthesis of LAM. Furthermore, we found that ethambutol efficiently inhibits biosynthesis of the AftC-LAM arabinan core, unambiguously demonstrating the involvement of the arabinofuranosyltransferase EmbC in early stages of LAM-arabinan biosynthesis. Finally, we demonstrate that AftC-LAM exhibits an enhanced proinflammatory activity, which is due to its ability to activate Toll-like receptor 2 (TLR2). Overall, our efforts further describe the mechanism of action of an important antitubercular drug, ethambutol, and demonstrate a role for specific arabinofuranosyltransferases in LAM biosynthesis. In addition, the availability of sufficient amounts of chemically defined wild-type and isogenic truncated LAMs paves the way for further investigations of the structure-function relationship of TLR2 activation by mycobacterial lipoglycans.

摘要

结核分枝杆菌细胞壁完整性的维持是必不可少的,也是几种抗结核药物的作用靶点。例如,乙胺丁醇通过抑制几种阿拉伯呋喃糖基转移酶来靶向阿拉伯半乳聚糖和脂阿拉伯甘露聚糖(LAM)的生物合成。除了在细胞壁完整性中的作用外,分枝杆菌 LAMs 还表现出重要的免疫调节活性。在这里,我们报道了从阿拉伯呋喃糖基转移酶 AftC 缺陷的耻垢分枝杆菌中分离和详细结构表征的独特 LAM 分子(AftC-LAM)。这种突变 LAM 表达一个严重截断的阿拉伯聚糖结构域,完全缺乏 3,5-Araf 分支残基,揭示了 AftC 内在参与 LAM 的生物合成。此外,我们发现乙胺丁醇能有效地抑制 AftC-LAM 的阿拉伯聚糖核心的生物合成,明确表明阿拉伯呋喃糖基转移酶 EmbC 参与 LAM-阿拉伯聚糖生物合成的早期阶段。最后,我们证明 AftC-LAM 表现出增强的促炎活性,这是由于它激活 Toll 样受体 2(TLR2)的能力。总的来说,我们的努力进一步描述了一种重要的抗结核药物乙胺丁醇的作用机制,并证明了特定的阿拉伯呋喃糖基转移酶在 LAM 生物合成中的作用。此外,足够数量的化学定义的野生型和同基因截断 LAMs 的可用性为进一步研究分枝杆菌糖脂激活 TLR2 的结构-功能关系铺平了道路。

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