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Functional Equivalence of OspA and OspB but Not OspC in Tick Colonization by Borrelia burgdorferi

机译:伯氏疏螺旋体在虫定殖中OspA和OspB的功能等效性而不是OspC的功能等效性

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摘要

Borrelia burgdorferi, a Lyme disease agent, makes different major outer surface lipoproteins at different stages of its mouse–tick infectious cycle. Outer surface protein A (OspA) coats the spirochetes from the time they enter ticks until they are transmitted to a mammal. OspA is required for normal tick colonization and has been shown to bind a tick midgut protein, indicating that OspA may serve as a tick midgut adhesin. Tick colonization by spirochetes lacking OspA is increased when the infecting blood meal is derived from mice that do not produce antibody, indicating that OspA may protect the spirochetes from host antibody, which will not recognize tick-specific proteins such as OspA. To further study the importance of OspA during tick colonization, we constructed a form of B. burgdorferi in which the ospA open reading frame, on lp54, was replaced with the ospC gene or the ospB gene, encoding a mammal-specific or tick-specific lipoprotein, respectively. These fusions yielded a strain that produces OspC within a tick (from the fusion gene) and during early mammalian infection (from the normal ospC locus) and a strain that produces OspB in place of OspA within ticks. Here we show that the related, tick-specific protein OspB can fully substitute for OspA, whereas the unrelated, mammal-specific protein OspC cannot. These data were derived from three different methods of infecting ticks, and they confirm and extend previous studies indicating that OspA both protects spirochetes within ticks from mammalian antibody and serves an additional role during tick colonization.
机译:伯氏疏螺旋体是莱姆病的致病因子,在其小鼠t虱感染周期的不同阶段产生不同的主要外表面脂蛋白。从螺旋体进入壁虱直到传播到哺乳动物之前,它们的表面都被外层蛋白A(OspA)包裹。 OspA是正常壁虱定居所必需的,并且已显示与壁虱中肠蛋白结合,这表明OspA可以作为壁虱中肠粘附素。当感染的血粉衍生自不产生抗体的小鼠时,缺乏OspA的螺旋体的ick虫定殖会增加,这表明OspA可以保护螺旋体免受宿主抗体的感染,而宿主抗体不会识别tick虫特异性蛋白(例如OspA)。为了进一步研究OspA在壁虱定殖过程中的重要性,我们构建了一种B. burgdorferi,其中lp54上的ospA开放阅读框被ospC基因或ospB基因取代,编码哺乳动物特异性或壁虱特异性脂蛋白。这些融合产生了在a内(来自融合基因)和早期哺乳动物感染期间(从正常的ospC基因座)产生OspC的菌株和在tick内代替OspA的OspB的菌株。在这里,我们显示了相关的,tick特定蛋白OspB可以完全替代OspA,而无关的哺乳动物特定蛋白OspC则不能。这些数据来自三种不同的感染tick的方法,它们证实并扩展了先前的研究,表明OspA既可以保护protect内的螺旋体免受哺乳动物抗体的侵害,又可以在tick定殖过程中发挥额外的作用。

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