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A call to order at the spirochaetal host-pathogen interface

机译:螺旋形宿主-病原体界面的订购电话

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As the Lyme disease spirochaete Borrelia burgdorferi shuttles back and forth between arthropod vector and vertebrate host, it encounters vastly different and hostile environments. Major mechanisms contributing to the success of this pathogen throughout this complex transmission cycle are phase and antigenic variation of abundant and serotype-defining surface lipoproteins. These peripherally membrane-anchored virulence factors mediate niche-specific interactions with vector/host factors and protect the spirochaete from the perils of the mammalian immune response. In this issue of Molecular Microbiology, Tilly, Bestor and Rosa redefine the roles of two lipoproteins, OspC and VlsE, during mammalian infection. Using a variety of promoter fusions in combination with a sensitive in vivo 'use it or lose it' gene complementation assay, the authors demonstrate that proper sequential expression of OspC followed by VlsE indeed matters. A previously suggested general functional redundancy between these and other lipoproteins is shown to be limited and dependent on an immunodeficient experimental setting that is arguably of diminished ecological relevance. These data reinforce the notion that OspC plays a unique role during initial infection while the antigenically variant VlsE proteins allow for persistence in the mammalian host.
机译:莱姆病螺旋体伯氏疏螺旋体在节肢动物媒介和脊椎动物寄主之间来回穿梭时,遇到了截然不同的敌对环境。在整个复杂的传播周期中,导致这种病原体成功的主要机制是丰富的和定义血清型的表面脂蛋白的相位和抗原变异。这些外周膜锚定的毒性因子介导与载体/宿主因子的生态位特异性相互作用,并保护螺旋体免受哺乳动物免疫反应的危害。在本期《分子微生物学》中,Tilly,Bestor和Rosa重新定义了两种脂蛋白OspC和VlsE在哺乳动物感染过程中的作用。作者将多种启动子融合体与敏感的体内“使用或丢失”基因互补检测结合使用,作者证明OspC正确顺序表达以及随后的VlsE确实很重要。这些和其他脂蛋白之间的先前建议的一般功能冗余被证明是有限的,并且取决于免疫缺陷的实验设置,而该实验设置可以说是降低了生态相关性。这些数据强化了这样一种观念,即OspC在初始感染过程中起着独特的作用,而抗原变体VlsE蛋白则允许在哺乳动物宿主中持续存在。

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