Department of Veterinary Medicine, University of Maryland, College Park, MD 20742.
Cytokines and Immunity Section, Cancer and Inflammation Program, National Cancer Institute, National Institutes of Health, Frederick, MD 21702.
Proc Natl Acad Sci U S A. 2018 Apr 17;115(16):E3788-E3797. doi: 10.1073/pnas.1718595115. Epub 2018 Apr 2.
is one of the few extracellular pathogens capable of establishing persistent infection in mammals. The mechanisms that sustain long-term survival of this bacterium are largely unknown. Here we report a unique innate immune evasion strategy of , orchestrated by a surface protein annotated as BBA57, through its modulation of multiple spirochete virulent determinants. BBA57 function is critical for early infection but largely redundant for later stages of spirochetal persistence, either in mammals or in ticks. The protein influences host IFN responses as well as suppresses multiple host microbicidal activities involving serum complement, neutrophils, and antimicrobial peptides. We also discovered a remarkable plasticity in BBA57-mediated spirochete immune evasion strategy because its loss, although resulting in near clearance of pathogens at the inoculum site, triggers nonheritable adaptive changes that exclude detectable nucleotide alterations in the genome but incorporate transcriptional reprograming events. Understanding the malleability in spirochetal immune evasion mechanisms that ensures their host persistence is critical for the development of novel therapeutic and preventive approaches to combat long-term infections like Lyme borreliosis.
伯氏疏螺旋体是少数能够在哺乳动物中建立持续性感染的细胞外病原体之一。维持这种细菌长期存活的机制在很大程度上尚不清楚。在这里,我们报告了伯氏疏螺旋体的一种独特的先天免疫逃避策略,由一种被注释为 BBA57 的表面蛋白通过其对多种螺旋体毒力决定因素的调节来协调。BBA57 的功能对于早期感染至关重要,但对于哺乳动物或蜱中的螺旋体持续存在的后期阶段则在很大程度上是多余的。该蛋白影响宿主 IFN 反应,并抑制涉及血清补体、中性粒细胞和抗菌肽的多种宿主杀菌活性。我们还发现 BBA57 介导的螺旋体免疫逃避策略具有显著的可塑性,因为尽管其缺失导致在接种部位几乎清除了病原体,但它会引发不可遗传的适应性变化,这些变化排除了基因组中可检测的核苷酸改变,但包含转录重编程事件。了解螺旋体免疫逃避机制的可变性对于开发新的治疗和预防方法来对抗莱姆病等长期感染至关重要。