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Published on: August 14, 2021
Features of two proteins of Leptospira interrogans with potential role in host-pathogen interactions
Renan F Domingos1, Monica L Vieira, Eliete C Romero
1Centro de Biotecnologia, Instituto Butantan, Avenida Vital Brazil, 1500, 05503-900, São Paulo, SP, Brazil.
Background:
Leptospirosis is considered a re-emerging infectious disease caused by pathogenic spirochaetes of the genus Leptospira. Pathogenic leptospires have the ability to survive and disseminate to multiple organs after penetrating the host. Leptospires were shown to express surface proteins that interact with the extracellular matrix (ECM) and to plasminogen (PLG). This study examined the interaction of two putative leptospiral proteins with laminin, collagen Type I, collagen Type IV, cellular fibronectin, plasma fibronectin, PLG, factor H and C4bp.
Results:
We show that two leptospiral proteins encoded by LIC11834 and LIC12253 genes interact with laminin in a dose - dependent and saturable mode, with dissociation equilibrium constants (KD) of 367.5 and 415.4 nM, respectively. These proteins were named Lsa33 and Lsa25 (Leptospiral surface adhesin) for LIC11834 and LIC12253, respectively. Metaperiodate - treated laminin reduced Lsa25 - laminin interaction, suggesting that sugar moieties of this ligand participate in this interaction. The Lsa33 is also PLG - binding receptor, with a KD of 23.53 nM, capable of generating plasmin in the presence of an activator. Although in a weak manner, both proteins interact with C4bp, a regulator of complement classical route. In silico analysis together with proteinase K and immunoflorescence data suggest that these proteins might be surface exposed. Moreover, the recombinant proteins partially inhibited leptospiral adherence to immobilized laminin and PLG.
Conclusions:
We believe that these multifunctional proteins have the potential to participate in the interaction of leptospires to hosts by mediating adhesion and by helping the bacteria to escape the immune system and to overcome tissue barriers. To our knowledge, Lsa33 is the first leptospiral protein described to date with the capability of binding laminin, PLG and C4bp in vitro.
Insights
Two novel Leptospira proteins, Lsa33 and Lsa25, bind host extracellular matrix proteins like laminin and plasminogen (PLG). These adhesins may help bacteria adhere to hosts and evade immune responses.
Area of Science:
- Microbiology
- Molecular Biology
- Immunology
Background:
- Leptospirosis is a re-emerging infectious disease caused by Leptospira bacteria.
- Pathogenic Leptospira can survive and spread to multiple organs within the host.
- Leptospira express surface proteins that interact with host extracellular matrix (ECM) and plasminogen (PLG).
Purpose of the Study:
- To investigate the interaction of two putative Leptospira surface proteins with host ECM components and complement regulators.
- To characterize the binding properties and potential roles of these proteins in host-pathogen interactions.
Main Methods:
- In vitro binding assays using purified recombinant proteins (Lsa33 and Lsa25) and various ECM proteins (laminin, collagen, fibronectin), PLG, and complement regulators (factor H, C4bp).
- In silico analysis, proteinase K treatment, and immunofluorescence to assess surface exposure of the proteins.
- Recombinant protein inhibition assays to evaluate their role in leptospiral adherence.
Main Results:
- Lsa33 and Lsa25 bind laminin in a dose-dependent and saturable manner (KD values ~367.5 and 415.4 nM).
- Lsa33 also binds PLG (KD ~23.53 nM) and can generate plasmin.
- Both proteins weakly interact with C4bp, and in silico/experimental data suggest they are surface-exposed. Recombinant proteins partially inhibited leptospiral adherence to laminin and PLG.
Conclusions:
- Lsa33 and Lsa25 are multifunctional proteins involved in Leptospira adhesion to host tissues.
- These proteins may facilitate immune evasion by binding PLG and C4bp.
- Lsa33 is the first described Leptospira protein binding laminin, PLG, and C4bp in vitro, highlighting its potential role in pathogenesis.
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