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伯氏疏螺旋体在外表面蛋白 BBA03 方面的竞争优势在蜱介导的哺乳动物宿主感染过程中。

Competitive advantage of Borrelia burgdorferi with outer surface protein BBA03 during tick-mediated infection of the mammalian host.

机构信息

Laboratory of Zoonotic Pathogens, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Rocky Mountain Laboratories, Hamilton, Montana, USA.

出版信息

Infect Immun. 2012 Oct;80(10):3501-11. doi: 10.1128/IAI.00521-12. Epub 2012 Jul 30.

Abstract

Linear plasmid lp54 is one of the most highly conserved and differentially expressed elements of the segmented genome of the Lyme disease spirochete Borrelia burgdorferi. We previously reported that deletion of a 4.1-kb region of lp54 (bba01 to bba07 [bba01-bba07]) led to a slight attenuation of tick-transmitted infection in mice following challenge with a large number of infected ticks. In the current study, we reduced the number of ticks in the challenge to more closely mimic the natural dose and found a profound defect in tick-transmitted infection of the bba01-bba07 mutant relative to wild-type B. burgdorferi. We next focused on deletion of bba03 as the most likely cause of this mutant phenotype, as previous studies have shown that expression of bba03 is increased by culture conditions that simulate tick feeding. Consistent with this hypothesis, we demonstrated increased expression of bba03 by spirochetes in fed relative to unfed ticks. We also observed that a bba03 deletion mutant, although fully competent by itself, did not efficiently infect mice when transmitted by ticks that were simultaneously coinfected with wild-type B. burgdorferi. These results suggest that BBA03 provides a competitive advantage to spirochetes carrying this protein during tick transmission to a mammalian host in the natural infectious cycle.

摘要

线性质粒 lp54 是莱姆病螺旋体伯氏疏螺旋体分段基因组中最保守和差异表达的元素之一。我们之前报道过,缺失 lp54 的 4.1kb 区域(bba01 到 bba07[bba01-bba07])会导致大量感染蜱的挑战后,小鼠经蜱传播感染的轻微衰减。在当前的研究中,我们减少了挑战中的蜱的数量,以更接近模拟自然剂量,并发现 bba01-bba07 突变体相对于野生型 B. burgdorferi 的蜱传播感染存在严重缺陷。接下来,我们专注于 bba03 的缺失,因为这是该突变体表型的最可能原因,因为先前的研究表明,bba03 的表达在模拟蜱喂养的培养条件下增加。与这一假设一致,我们证明了 bba03 在喂食的蜱中比未喂食的蜱中的表达增加。我们还观察到,bba03 缺失突变体本身虽然完全有能力,但当通过同时感染野生型 B. burgdorferi 的蜱传播时,不能有效地感染小鼠。这些结果表明,在自然感染周期中,携带这种蛋白的螺旋体在通过蜱向哺乳动物宿主传播时,BBA03 提供了竞争优势。

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