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Cholesterol lipids of Borrelia burgdorferi form lipid rafts and are required for the bactericidal activity of a complement-independent antibody.

机译:伯氏疏螺旋体的胆固醇脂质形成脂质筏,并且是补体非依赖性抗体的杀菌活性所必需的。

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摘要

Borrelia burgdorferi, the agent of Lyme disease, is unusual as it contains free cholesterol and cholesterol glycolipids. It is also susceptible to complement-independent bactericidal antibodies, such as CB2, a monoclonal IgG1 against outer surface protein B (OspB). We find that the bactericidal action of CB2 requires the presence of cholesterol glycolipids and cholesterol. Ultrastructural, biochemical, and biophysical analysis revealed that the bacterial cholesterol glycolipids exist as lipid raft-like microdomains in the outer membrane of cultured and mouse-derived B. burgdorferi and in model membranes from B. burgdorferi lipids. The order and size of the microdomains are temperature sensitive and correlate with the bactericidal activity of CB2. This study demonstrates the existence of cholesterol-containing lipid raft-like microdomains in a prokaryote, and we suggest that the temperature dependence of B. burgdorferi lipid raft organization may have significant implications in the transmission cycle of the spirochetes which are exposed to a range of temperatures.
机译:莱姆病的病原体伯氏疏螺旋体(Borrelia burgdorferi)异常,因为它含有游离胆固醇和胆固醇糖脂。它还对不依赖补体的杀菌抗体(如CB2)敏感,CB2是针对外表面蛋白B(OspB)的单克隆IgG1。我们发现CB2的杀菌作用需要胆固醇糖脂和胆固醇的存在。超微结构,生化和生物物理分析表明,细菌胆固醇糖脂以脂质筏样微区的形式存在于培养和小鼠来源的B的外膜中。 burgdorferi 和 B的模型膜中。伯格氏脂质。微域的顺序和大小对温度敏感,并且与CB2的杀菌活性相关。这项研究证明了原核生物中存在含胆固醇的脂质筏状微结构域,并且我们认为B的温度依赖性。 burgdorferi脂筏的组织可能对暴露于一定温度范围的螺旋体的传播周期有重要影响。

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