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霍烷类化合物的产生是伯克霍尔德氏菌对低 pH 值耐受、抗微生物耐药性和运动性所必需的。

Hopanoid production is required for low-pH tolerance, antimicrobial resistance, and motility in Burkholderia cenocepacia.

机构信息

Department of Microbiology and Immunology, University of Western Ontario, London, Ontario, N6A 5C1, Canada.

出版信息

J Bacteriol. 2011 Dec;193(23):6712-23. doi: 10.1128/JB.05979-11. Epub 2011 Sep 30.

Abstract

Hopanoids are pentacyclic triterpenoids that are thought to be bacterial surrogates for eukaryotic sterols, such as cholesterol, acting to stabilize membranes and to regulate their fluidity and permeability. To date, very few studies have evaluated the role of hopanoids in bacterial physiology. The synthesis of hopanoids depends on the enzyme squalene-hopene cyclase (Shc), which converts the linear squalene into the basic hopene structure. Deletion of the 2 genes encoding Shc enzymes in Burkholderia cenocepacia K56-2, BCAM2831 and BCAS0167, resulted in a strain that was unable to produce hopanoids, as demonstrated by gas chromatography and mass spectrometry. Complementation of the Δshc mutant with only BCAM2831 was sufficient to restore hopanoid production to wild-type levels, while introducing a copy of BCAS0167 alone into the Δshc mutant produced only very small amounts of the hopanoid peak. The Δshc mutant grew as well as the wild type in medium buffered to pH 7 and demonstrated no defect in its ability to survive and replicate within macrophages, despite transmission electron microscopy (TEM) revealing defects in the organization of the cell envelope. The Δshc mutant displayed increased sensitivity to low pH, detergent, and various antibiotics, including polymyxin B and erythromycin. Loss of hopanoid production also resulted in severe defects in both swimming and swarming motility. This suggests that hopanoid production plays an important role in the physiology of B. cenocepacia.

摘要

藿烷类化合物是五环三萜类化合物,被认为是真核甾醇(如胆固醇)的细菌替代品,作用是稳定膜并调节其流动性和通透性。迄今为止,很少有研究评估藿烷类化合物在细菌生理学中的作用。藿烷类化合物的合成依赖于鲨烯-霍烯环化酶(Shc),它将线性鲨烯转化为基本的霍烯结构。伯克霍尔德氏菌中编码 Shc 酶的 2 个基因(BCAM2831 和 BCAS0167)的缺失导致了一种无法产生藿烷类化合物的菌株,这一点通过气相色谱和质谱得到了证实。Δshc 突变体仅用 BCAM2831 进行互补足以将藿烷类化合物的产生恢复到野生型水平,而将 BCAS0167 的一个拷贝单独引入 Δshc 突变体中仅产生非常少量的藿烷类化合物峰。Δshc 突变体在缓冲至 pH7 的培养基中生长情况与野生型一样好,并且尽管透射电子显微镜(TEM)显示细胞包膜的组织存在缺陷,但在巨噬细胞内生存和复制的能力没有缺陷。Δshc 突变体对低 pH 值、去污剂和各种抗生素(包括多粘菌素 B 和红霉素)的敏感性增加。藿烷类化合物的产生缺失也导致游泳和群集运动能力严重缺陷。这表明藿烷类化合物的产生在伯克霍尔德氏菌的生理学中起着重要作用。

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