MCP5, a methyl-accepting chemotaxis protein regulated by both the Hk1-Rrp1 and Rrp2-RpoN-RpoS pathways, is required for the immune evasion of Borrelia burgdorferi.

IF 4.9 1区 医学 Q1 MICROBIOLOGY PLoS Pathogens Pub Date : 2024-12-30 eCollection Date: 2024-12-01 DOI:10.1371/journal.ppat.1012327
Sajith Raghunandanan, Kai Zhang, Yan Zhang, Raj Priya, Ching Wooen Sze, Yongliang Lou, Michael J Lynch, Brian R Crane, Mark H Kaplan, Chunhao Li, X Frank Yang
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Abstract

Borrelia (or Borreliella) burgdorferi, the causative agent of Lyme disease, is a motile and invasive zoonotic pathogen adept at navigating between its arthropod vector and mammalian host. While motility and chemotaxis are well known to be essential for its enzootic cycle, the role of each methyl-accepting chemotaxis proteins (MCPs) in the infectious cycle of B. burgdorferi remains unclear. In this study, we show that mcp5, a gene encoding one of the most abundant MCPs in B. burgdorferi, is differentially expressed in response to environmental signals and at distinct stages of the pathogen's enzootic cycle. Notably, mcp5 expression is regulated by the Hk1-Rrp1 and Rrp2-RpoN-RpoS pathways, two key regulatory pathways that are critical for the spirochete's colonization of the tick vector and mammalian host, respectively. Infection experiments with an mcp5 mutant revealed that spirochetes lacking MCP5 were unable to establish infections in either C3H/HeN mice or Severe Combined Immunodeficiency (SCID) mice, which are deficient in adaptive immunity, underscoring MCP5's critical role in mammalian infection. However, the mcp5 mutant was able to establish infection and disseminate in NOD SCID Gamma (NSG) mice, which are deficient in both adaptive and most innate immune responses, suggesting that MCP5 plays an important role in evading host innate immunity. Moreover, NK cell depletion in C3H and SCID mice restored the infectivity of the mcp5 mutant, further highlighting MCP5's role in evading NK cell-associated immunity. Co-culture assays with NK cells and macrophages revealed that the mcp5 mutant enhanced interferon-gamma production by NK cells. In the tick vector, the mcp5 mutants survived feeding but failed to transmit to mice. These findings reveal that MCP5, regulated by both the Rrp1 and Rrp2 pathways, is critical for establishing infection in mammalian hosts by evading NK cell-mediated host innate immunity and is important for the transmission of spirochetes from ticks to mammalian hosts. This work provides a foundation for further elucidation of chemotactic signals sensed by MCP5 that facilitate B. burgdorferi in evading host defenses.

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MCP5是一种受Hk1-Rrp1和rrp2 - rpo - rpos通路调控的甲基接受趋化蛋白,是伯氏疏螺旋体免疫逃避所必需的。
伯氏疏螺旋体(Borreliella burgdorferi)是莱姆病的病原体,是一种具有移动性和侵入性的人畜共患病原体,擅长在其节肢动物载体和哺乳动物宿主之间导航。虽然众所周知,运动性和趋化性对其局部流行周期至关重要,但每种甲基接受趋化蛋白(MCPs)在伯氏疏螺旋体感染周期中的作用尚不清楚。在这项研究中,我们发现mcp5是伯氏疏螺旋体中最丰富的MCPs之一的编码基因,在响应环境信号和病原体地方性动物循环的不同阶段差异表达。值得注意的是,mcp5的表达受Hk1-Rrp1和rrp2 - rpo - rpos通路的调控,这两个关键的调控通路分别对螺旋体在蜱虫载体和哺乳动物宿主中的定殖至关重要。mcp5突变体的感染实验显示,缺乏mcp5的螺旋体无法在缺乏适应性免疫的C3H/HeN小鼠或严重联合免疫缺陷(SCID)小鼠中建立感染,强调了mcp5在哺乳动物感染中的关键作用。然而,mcp5突变体能够在NOD SCID γ (NSG)小鼠中建立感染和传播,这表明mcp5在逃避宿主先天免疫中发挥重要作用。此外,C3H和SCID小鼠的NK细胞缺失恢复了mcp5突变体的感染性,进一步强调了mcp5在逃避NK细胞相关免疫中的作用。NK细胞和巨噬细胞共培养实验显示,mcp5突变体增强NK细胞产生干扰素。在蜱虫载体中,mcp5突变体在喂食后存活,但未能传播给小鼠。这些发现表明,受Rrp1和Rrp2通路调控的MCP5对于逃避NK细胞介导的宿主先天免疫在哺乳动物宿主中建立感染至关重要,并且对于螺旋体从蜱传播到哺乳动物宿主至关重要。这项工作为进一步阐明MCP5感知的趋化信号促进伯氏疏螺旋体逃避宿主防御提供了基础。
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来源期刊
PLoS Pathogens
PLoS Pathogens MICROBIOLOGY-PARASITOLOGY
自引率
3.00%
发文量
598
期刊介绍: Bacteria, fungi, parasites, prions and viruses cause a plethora of diseases that have important medical, agricultural, and economic consequences. Moreover, the study of microbes continues to provide novel insights into such fundamental processes as the molecular basis of cellular and organismal function.
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