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Published on: August 14, 2021
The multifunctional LigB adhesin binds homeostatic proteins with potential roles in cutaneous infection by pathogenic
Henry A Choy1, Melissa M Kelley, Julio Croda
1Department of Medicine, David Geffen School of Medicine at University of California Los Angeles, Los Angeles, California, United States of America. hachoy@ucla.edu
Abstract:
Leptospirosis is a potentially fatal zoonotic disease in humans and animals caused by pathogenic spirochetes, such as Leptospira interrogans. The mode of transmission is commonly limited to the exposure of mucous membrane or damaged skin to water contaminated by leptospires shed in the urine of carriers, such as rats. Infection occurs during seasonal flooding of impoverished tropical urban habitats with large rat populations, but also during recreational activity in open water, suggesting it is very efficient. LigA and LigB are surface localized proteins in pathogenic Leptospira strains with properties that could facilitate the infection of damaged skin. Their expression is rapidly induced by the increase in osmolarity encountered by leptospires upon transition from water to host. In addition, the immunoglobulin-like repeats of the Lig proteins bind proteins that mediate attachment to host tissue, such as fibronectin, fibrinogen, collagens, laminin, and elastin, some of which are important in cutaneous wound healing and repair. Hemostasis is critical in a fresh injury, where fibrinogen from damaged vasculature mediates coagulation. We show that fibrinogen binding by recombinant LigB inhibits fibrin formation, which could aid leptospiral entry into the circulation, dissemination, and further infection by impairing healing. LigB also binds fibroblast fibronectin and type III collagen, two proteins prevalent in wound repair, thus potentially enhancing leptospiral adhesion to skin openings. LigA or LigB expression by transformation of a nonpathogenic saprophyte, L. biflexa, enhances bacterial adhesion to fibrinogen. Our results suggest that by binding homeostatic proteins found in cutaneous wounds, LigB could facilitate leptospirosis transmission. Both fibronectin and fibrinogen binding have been mapped to an overlapping domain in LigB comprising repeats 9-11, with repeat 11 possibly enhancing binding by a conformational effect. Leptospirosis patient antibodies react with the LigB domain, suggesting applications in diagnosis and vaccines that are currently limited by the strain-specific leptospiral lipopolysaccharide coats.
Insights
Leptospira surface proteins LigA and LigB bind to host proteins involved in wound healing and blood clotting. This interaction may facilitate the transmission of leptospirosis, a serious zoonotic disease.
Area of Science:
- Microbiology
- Infectious Diseases
- Zoonotic Pathogens
Background:
- Leptospirosis is a severe zoonotic disease caused by Leptospira spirochetes.
- Transmission occurs through contact with contaminated water, particularly in urban areas with rat populations.
- Surface proteins LigA and LigB are implicated in Leptospira pathogenesis.
Purpose of the Study:
- To investigate the role of Leptospira immunoglobulin-like (Lig) proteins in host tissue interaction and disease transmission.
- To determine if LigA and LigB bind to host proteins involved in hemostasis and wound repair.
- To explore the potential of LigB-host protein interactions in facilitating leptospiral infection.
Main Methods:
- Recombinant LigB protein was used to test binding to host extracellular matrix proteins.
- Expression of LigA or LigB in a nonpathogenic Leptospira strain was used to assess adhesion.
- Antibody reactivity to LigB domains was analyzed using patient sera.
Main Results:
- Recombinant LigB inhibited fibrin formation by binding to fibrinogen, potentially hindering wound healing.
- LigB also bound to fibronectin and type III collagen, key components of wound repair.
- Expression of LigA or LigB enhanced bacterial adhesion to fibrinogen.
- A specific domain (repeats 9-11) in LigB was identified as responsible for fibronectin and fibrinogen binding.
Conclusions:
- Leptospira LigB protein facilitates infection by binding to host hemostatic and wound repair proteins.
- This binding mechanism may enhance bacterial adhesion and dissemination, aiding leptospirosis transmission.
- The identified LigB binding domain and patient antibody response offer potential targets for diagnostics and vaccines.
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