SPATEs promote the survival of Shigella to the plasma complement system upon local hemorrhage and bacteremia

志贺氏菌病 志贺氏菌 微生物学 福氏志贺氏菌 菌血症 痢疾志贺氏菌 血性腹泻 宋内志贺氏菌 生物 腹泻 毒力 免疫学 痢疾 肠杆菌科 病毒学 医学 细菌 内科学 大肠杆菌 抗生素 沙门氏菌 遗传学 基因 生物化学
作者
Lorine Debande,Ahmad Sabbah,Lauriane Kühn,Richard Patryk Ngondo,Julie Maucotel,Marina Valente-Barroso,Antonin C. André,B. Roche,Matthieu Laborde,Maria-Victoria Cantalapiedra-Mateo,Tamou Thahouly,Ana Milinski,Laurent Bianchetti,Christine Allmang,Magali Frugier,Benoît Marteyn
出处
期刊:Proceedings of the National Academy of Sciences of the United States of America [Proceedings of the National Academy of Sciences]
卷期号:121 (45)
标识
DOI:10.1073/pnas.2319951121
摘要

Shigella spp. are the causative agents of shigellosis, which remains a leading cause of death in children under the age of 5. Symptoms of shigellosis include bloody diarrhea, associated to colon hemorrhage; in more severe cases , Shigella bacteremia is induced. These clinical features indicate that Shigella are exposed and survive exposure to plasma, locally and systemically, although this has not yet been studied at a molecular level. In this report, we confirmed in a guinea pig model of shigellosis that both S. flexneri 5a and S. sonnei induced local hemorrhages and we demonstrated that Shigella reached CD31+/CD34+ blood vessels located in the mucosa during the late stages of infection, and further disseminated in the bloodstream. These results confirmed the exposure of Shigella to plasma components during its virulence cycle. We demonstrated that all the tested Shigella strains survived plasma exposure in vitro, and we showed that Serine Protease Autotransporters of Enterobacteriaceae (SPATEs) contribute to Shigella dissemination within the colonic mucosa and in the bloodstream. We have confirmed that SPATEs are expressed and secreted in poorly oxygenated environments encountered by Shigella during late infection stages. We further demonstrated that SPATEs promoted Shigella survival in plasma, by cleaving complement component 3 (C3), thereby impairing the complement system activation. We have shown here that the ability of Shigella to survive plasma exposure is a key factor in its virulence, both within primary foci and systemically.
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