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An Electroporation Method to Transform Rickettsia spp. with a Fluorescent Protein-Expressing Shuttle Vector in Tick Cell Lines
Published on: October 11, 2022
Pathogenic Rickettsia species acquire vitronectin from human serum to promote resistance to complement-mediated
Sean P Riley1, Jennifer L Patterson, Samantha Nava
1Department of Microbiology, University of Chicago, Chicago, IL, 60637, USA; Howard T. Ricketts Laboratory, Argonne, IL, 60439, USA; Vector-Borne Diseases Laboratories, Department of Pathobiological Sciences, Louisiana State University School of Veterinary Medicine, Baton Rouge, LA, 70803, USA.
Abstract:
Bacteria of the genus Rickettsia are transmitted from arthropod vectors and primarily infect cells of the mammalian endothelial system. Throughout this infectious cycle, the bacteria are exposed to the deleterious effects of serum complement. Using Rickettsia conorii, the etiologic agent of Mediterranean spotted fever (MSF), as a model rickettsial species, we have previously demonstrated that this class of pathogen interacts with human factor H to mediate partial survival in human serum. Herein, we demonstrate that R. conorii also interacts with the terminal complement complex inhibitor vitronectin (Vn). We further demonstrate that an evolutionarily conserved rickettsial antigen, Adr1/RC1281, interacts with human vitronectin and is sufficient to mediate resistance to serum killing when expressed at the outer-membrane of serum sensitive Escherichia coli. Adr1 is an integral outer-membrane protein whose structure is predicted to contain eight membrane-embedded β-strands and four 'loop' regions that are exposed to extracellular milieu. Site-directed mutagenesis of Adr1 revealed that at least two predicted 'loop' regions are required to mediate resistance to complement-mediatedkilling and vitronectin acquisition. These results demonstrate that rickettsial species have evolved multiple mechanisms to evade complement deposition and that evasion of killing in serum is an evolutionarily conserved virulence attribute for this genus of obligate intracellular pathogens.
Insights
Rickettsia bacteria evade host defenses by interacting with vitronectin, a complement inhibitor. A conserved antigen, Adr1, mediates resistance to serum killing, revealing an evolutionarily conserved virulence strategy.
Area of Science:
- Microbiology
- Immunology
- Pathogen-host interactions
Background:
- Rickettsia bacteria, transmitted by arthropods, infect mammalian endothelial cells.
- During infection, rickettsiae face serum complement, a key immune defense.
- Rickettsia conorii previously shown to interact with human factor H for serum survival.
Purpose of the Study:
- To investigate Rickettsia conorii interaction with vitronectin (Vn), a terminal complement inhibitor.
- To identify and characterize rickettsial factors involved in complement evasion.
- To determine if complement evasion is a conserved virulence trait in Rickettsia.
Main Methods:
- Investigated R. conorii interaction with human vitronectin.
- Expressed a conserved rickettsial antigen, Adr1/RC1281, in serum-sensitive E. coli.
- Utilized site-directed mutagenesis to analyze Adr1 structure-function relationships.
Main Results:
- R. conorii interacts with human vitronectin (Vn).
- The outer-membrane protein Adr1 interacts with Vn and confers resistance to serum killing when expressed in E. coli.
- Specific loop regions of Adr1 are crucial for complement resistance and Vn acquisition.
Conclusions:
- Rickettsia species possess multiple mechanisms to evade complement deposition.
- Vitronectin acquisition via Adr1 is a key strategy for Rickettsia to resist serum killing.
- Serum resistance is an evolutionarily conserved virulence attribute in Rickettsia.
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