Streptococcus suis Deploys Multiple ATP-Dependent Proteases for Heat Stress Adaptation

IF 3.5 4区 生物学 Q2 MICROBIOLOGY Journal of Basic Microbiology Pub Date : 2024-06-21 DOI:10.1002/jobm.202400030
Jianan Liu, Jianzhong Wang, Zhen Zhang, Qiankun Bai, Xinming Pan, Rong Chen, Huochun Yao, Yong Yu, Jiale Ma
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Abstract

Streptococcus suis is an important zoonotic pathogen, causing cytokine storms of Streptococcal toxic shock-like syndrome amongst humans after a wound infection into the bloodstream. To overcome the challenges of fever and leukocyte recruitment, invasive S. suis must deploy multiple stress responses forming a network and utilize proteases to degrade short-lived regulatory and misfolded proteins induced by adverse stresses, thereby adapting and evading host immune responses. In this study, we found that S. suis encodes multiple ATP-dependent proteases, including single-chain FtsH and double-subunit Clp protease complexes ClpAP, ClpBP, ClpCP, and ClpXP, which were activated as the fever of infected mice in vivo. The expression of genes ftsH, clpA/B/C, and clpP, but not clpX, were significantly upregulated in S. suis in response to heat stress, while were not changed notably under the treatments with several other stresses, including oxidative, acidic, and cold stimulation. FtsH and ClpP were required for S. suis survival within host blood under heat stress in vitro and in vivo. Deletion of ftsH or clpP attenuated the tolerance of S. suis to heat, oxidative and acidic stresses, and significantly impaired the bacterial survival within macrophages. Further analysis identified that repressor CtsR directly binds and controls the clpA/B/C and clpP operons and is relieved by heat stress. In summary, the deployments of multiple ATP-dependent proteases form a flexible heat stress response network that appears to allow S. suis to fine-tune the degradation or refolding of the misfolded proteins to maintain cellular homeostasis and optimal survival during infection.

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猪链球菌部署多种 ATP 依赖性蛋白酶以适应热应激
猪链球菌是一种重要的人畜共患病原体,在伤口感染血液后会引起细胞因子风暴,导致人类出现类似链球菌中毒性休克综合征。为了克服发热和白细胞募集的挑战,入侵的猪链球菌必须部署多种应激反应,形成一个网络,并利用蛋白酶降解不利应激诱导的短效调节蛋白和折叠错误蛋白,从而适应和逃避宿主的免疫反应。在这项研究中,我们发现鼠疫杆菌编码多种 ATP 依赖性蛋白酶,包括单链 FtsH 和双亚基 Clp 蛋白酶复合物 ClpAP、ClpBP、ClpCP 和 ClpXP。在S.suis中,热应激时基因ftsH、clpA/B/C和clpP的表达明显上调,而clpX的表达则没有明显变化,而在其他几种应激(包括氧化、酸性和冷刺激)下,基因的表达则没有明显变化。在体外和体内热应激条件下,猪链球菌在宿主血液中存活都需要 FtsH 和 ClpP。缺失 ftsH 或 clpP 会降低猪链球菌对热、氧化和酸性应激的耐受性,并显著降低细菌在巨噬细胞中的存活率。进一步分析发现,抑制因子 CtsR 可直接结合并控制 clpA/B/C 和 clpP 操作子,并在热胁迫下得到缓解。总之,多种 ATP 依赖性蛋白酶的部署形成了一个灵活的热应激反应网络,似乎允许 S. suis 微调错误折叠蛋白的降解或重新折叠,以维持细胞平衡和感染期间的最佳存活。
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来源期刊
Journal of Basic Microbiology
Journal of Basic Microbiology 生物-微生物学
CiteScore
6.10
自引率
0.00%
发文量
134
审稿时长
1.8 months
期刊介绍: The Journal of Basic Microbiology (JBM) publishes primary research papers on both procaryotic and eucaryotic microorganisms, including bacteria, archaea, fungi, algae, protozoans, phages, viruses, viroids and prions. Papers published deal with: microbial interactions (pathogenic, mutualistic, environmental), ecology, physiology, genetics and cell biology/development, new methodologies, i.e., new imaging technologies (e.g. video-fluorescence microscopy, modern TEM applications) novel molecular biology methods (e.g. PCR-based gene targeting or cassettes for cloning of GFP constructs).
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