Leptospira interrogans Secreted Proteases Degrade Extracellular Matrix and Plasma Proteins From the Host
Ludmila B da Silva1, Milene C Menezes2, Eduardo S Kitano2
1Laboratory of Bacteriology, Butantan Institute, São Paulo, Brazil.
Abstract:
Leptospires are highly motile spirochetes equipped with strategies for efficient invasion and dissemination within the host. Our group previously demonstrated that pathogenic leptospires secrete proteases capable of cleaving and inactivating key molecules of the complement system, allowing these bacteria to circumvent host's innate immune defense mechanisms. Given the successful dissemination of leptospires during infection, we wondered if such proteases would target a broader range of host molecules. In the present study, the proteolytic activity of secreted leptospiral proteases against a panel of extracellular matrix (ECM) and plasma proteins was assessed. The culture supernatant of the virulent L. interrogans serovar Kennewicki strain Fromm (LPF) degraded human fibrinogen, plasma fibronectin, gelatin, and the proteoglycans decorin, biglycan, and lumican. Interestingly, human plasminogen was not cleaved by proteases present in the supernatants. Proteolytic activity was inhibited by 1,10-phenanthroline, suggesting the participation of metalloproteases. Moreover, production of proteases might be an important virulence determinant since culture-attenuated or saprophytic Leptospira did not display proteolytic activity against ECM or plasma components. Exoproteomic analysis allowed the identification of three metalloproteases that could be involved in the degradation of host components. The ability to cleave conjunctive tissue molecules and coagulation cascade proteins may certainly contribute to invasion and tissue destruction observed upon infection with Leptospira.
Insights
Pathogenic Leptospira secrete metalloproteases that degrade host extracellular matrix and plasma proteins, aiding bacterial invasion and tissue damage. Saprophytic Leptospira lack this proteolytic activity, highlighting its role in virulence.
Area of Science:
- Microbiology
- Pathogenesis
- Biochemistry
Background:
- Leptospires are motile spirochetes known to evade host defenses by secreting proteases.
- Previous work showed leptospiral proteases inactivate complement system components.
Purpose of the Study:
- To investigate if leptospiral proteases target a broader range of host molecules, including extracellular matrix (ECM) and plasma proteins.
- To identify specific proteases involved in virulence.
Main Methods:
- Assessed proteolytic activity of virulent *L. interrogans* culture supernatant against ECM and plasma proteins.
- Used 1,10-phenanthroline to inhibit protease activity.
- Performed exoproteomic analysis to identify specific proteases.
Main Results:
- Secreted proteases degraded human fibrinogen, fibronectin, gelatin, decorin, biglycan, and lumican.
- Plasminogen was not cleaved.
- Proteolytic activity was inhibited by 1,10-phenanthroline, indicating metalloprotease involvement.
- Virulent strains showed activity, while attenuated/saprophytic strains did not.
- Identified three metalloproteases potentially responsible for ECM/plasma protein degradation.
Conclusions:
- Leptospiral metalloproteases degrade key host ECM and plasma proteins, contributing to invasion and tissue destruction.
- Protease production is a significant virulence factor for pathogenic Leptospira.
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