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宿主血红素对血红素营养缺陷型酿脓链球菌毒力作用的可视化。

Visualization of the role of host heme on the virulence of the heme auxotroph Streptococcus agalactiae.

机构信息

Micalis Institute, INRA, AgroParisTech, Université Paris-Saclay, 78350 Jouy en Josas, France.

Fromagerie BEL, 7 boulevard de l'Industrie, 41100 Vendôme, France.

出版信息

Sci Rep. 2017 Jan 16;7:40435. doi: 10.1038/srep40435.

Abstract

Heme is essential for several cellular key functions but is also toxic. Whereas most bacterial pathogens utilize heme as a metabolic cofactor and iron source, the impact of host heme during bacterial infection remains elusive. The opportunist pathogen Streptococcus agalactiae does not synthesize heme but still uses it to activate a respiration metabolism. Concomitantly, heme toxicity is mainly controlled by the HrtBA efflux transporter. Here we investigate how S. agalactiae manages heme toxicity versus benefits in the living host. Using bioluminescent bacteria and heme-responsive reporters for in vivo imaging, we show that the capacity of S. agalactiae to overcome heme toxicity is required for successful infection, particularly in blood-rich organs. Host heme is simultaneously required, as visualized by a generalized infection defect of a respiration-negative mutant. In S. agalactiae, HrtBA expression responds to an intracellular heme signal via activation of the two-component system HssRS. A hssRS promoter-driven intracellular luminescent heme sensor was designed to identify host compartments that supply S. agalactiae with heme. S. agalactiae acquires heme in heart, kidneys, and liver, but not in the brain. We conclude that S. agalactiae response to heme is organ-dependent, and its efflux may be particularly relevant in late stages of infection.

摘要

血红素对于许多细胞关键功能至关重要,但同时也具有毒性。虽然大多数细菌病原体将血红素用作代谢辅因子和铁源,但宿主血红素在细菌感染过程中的影响仍然难以捉摸。机会性病原体酿脓链球菌本身不能合成血红素,但仍会利用它来激活呼吸代谢。同时,血红素毒性主要由 HrtBA 外排转运蛋白控制。在这里,我们研究了酿脓链球菌如何在活宿主中管理血红素毒性与益处。我们使用生物发光细菌和血红素响应报告基因进行体内成像,结果表明,酿脓链球菌克服血红素毒性的能力对于成功感染至关重要,特别是在富含血液的器官中。宿主血红素同时也是必需的,这可以通过呼吸缺陷突变体的普遍感染缺陷来可视化。在酿脓链球菌中,HrtBA 的表达通过双组分系统 HssRS 对细胞内血红素信号做出响应。我们设计了一个 hssRS 启动子驱动的细胞内发光血红素传感器,以鉴定为酿脓链球菌提供血红素的宿主隔室。酿脓链球菌在心脏、肾脏和肝脏中获取血红素,但在大脑中则不能。我们得出结论,酿脓链球菌对血红素的反应是器官依赖性的,其外排可能在感染后期尤其相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec00/5238366/40fd1ca87832/srep40435-f1.jpg

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