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Changes in Temporal and Spatial Patterns of Outer Surface Lipoprotein Expression Generate Population Heterogeneity and Antigenic Diversity in the Lyme Disease Spirochete Borrelia burgdorferi

机译:外表面脂蛋白表达的时空变化产生莱姆病螺旋体伯氏疏螺旋体的种群异质性和抗原多样性

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摘要

Borrelia burgdorferi differentially expresses many of the OspE/F/Elp paralogs during tick feeding. These findings, combined with the recent report that stable B. burgdorferi infection of mammals occurs only after 53 h of tick attachment, prompted us to further analyze the expression of the OspE/F/Elp paralogs during this critical period of transmission. Indirect immunofluorescence analysis revealed that OspE, p21, ElpB1, ElpB2, and OspF/BbK2.11 are expressed in the salivary glands of ticks allowed to feed on mice for 53 to 58 h. Interestingly, many of the spirochetes in the salivary glands that expressed abundant amounts of these antigens were negative for OspA and OspC. Although prior reports have indicated that OspE/F/Elp orthologs are surface exposed, none of the individual lipoproteins or combinations of the lipoproteins protected mice from challenge infections. To examine why these apparently surface-exposed lipoproteins were not protective, we analyzed their genetic stability during infection and their cellular locations after cultivation in vitro and within dialysis membrane chambers, mimicking a mammalian host-adapted state. Combined restriction fragment length polymorphism and nucleotide sequence analyses revealed that the genes encoding these lipoproteins are stable for at least 8 months postinfection. Interestingly, cellular localization experiments revealed that while all of these proteins can be surface localized, there were significant populations of spirochetes that expressed these lipoproteins only in the periplasm. Furthermore, host-specific signals were found to alter the expression patterns and final cellular location of these lipoproteins. The combined data revealed a remarkable heterogeneity in populations of B. burgdorferi during tick transmission and mammalian infection. The diversity is generated not only by temporal changes in antigen expression but also by modulation of the surface lipoproteins during infection. The ability to regulate the temporal and spatial expression patterns of lipoproteins throughout infection likely contributes to persistent infection of mammals by B. burgdorferi.
机译:伯氏疏螺旋体在tick喂期间差异表达许多OspE / F / Elp旁系同源物。这些发现,再加上最近的报告,即仅在壁虱附着后53小时才发生伯氏疏螺旋体对哺乳动物的稳定感染,促使我们进一步分析OspE / F / Elp旁系同源物在此关键传播时期的表达。间接免疫荧光分析表明,OspE,p21,ElpB1,ElpB2和OspF / BbK2.11在唾液腺的expressed中表达,允许以小鼠为食53至58 h。有趣的是,唾液腺中许多表达大量这些抗原的螺旋体对OspA和OspC呈阴性。尽管先前的报道表明OspE / F / Elp直系同源物是表面暴露的,但没有任何一种单独的脂蛋白或脂蛋白组合能够保护小鼠免受感染。为了检查为什么这些表面暴露的脂蛋白没有保护性,我们分析了它们在感染过程中的遗传稳定性以及体外培养和在透析膜室内模拟哺乳动物宿主适应状态后的细胞位置。结合的限制性片段长度多态性和核苷酸序列分析表明,编码这些脂蛋白的基因在感染后至少8个月内是稳定的。有趣的是,细胞定位实验表明,尽管所有这些蛋白质都可以表面定位,但仍有大量的螺旋体仅在周质中表达这些脂蛋白。此外,发现宿主特异性信号改变了这些脂蛋白的表达模式和最终细胞位置。合并的数据显示,tick传播和哺乳动物感染期间,伯氏疏螺旋体种群具有显着的异质性。多样性不仅通过抗原表达的时间变化而产生,而且还通过在感染期间对表面脂蛋白的调节而产生。在整个感染过程中调节脂蛋白的时空表达模式的能力可能有助于伯氏疏螺旋体持续感染哺乳动物。

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