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Updated: Jul 20, 2026

Immuno-fluorescence Assay of Leptospiral Surface-exposed Proteins
Published on: July 1, 2011
A newly identified leptospiral adhesin mediates attachment to laminin
Angela S Barbosa1, Patricia A E Abreu, Fernanda O Neves
1Centro de Biotecnologia, Instituto Butantan, Avenida Vital Brazil, 1500, 05503-900, São Paulo, Brazil.
Abstract:
Pathogenic leptospires have the ability to survive and disseminate to multiple organs after penetrating the host. Several pathogens, including spirochetes, have been shown to express surface proteins that interact with the extracellular matrix (ECM). This adhesin-mediated binding process seems to be a crucial step in the colonization of host tissues. This study examined the interaction of putative leptospiral outer membrane proteins with laminin, collagen type I, collagen type IV, cellular fibronectin, and plasma fibronectin. Six predicted coding sequences selected from the Leptospira interrogans serovar Copenhageni genome were cloned, and proteins were expressed, purified by metal affinity chromatography, and characterized by circular dichroism spectroscopy. Their capacity to mediate attachment to ECM components was evaluated by binding assays. We have identified a leptospiral protein encoded by LIC12906, named Lsa24 (leptospiral surface adhesin; 24 kDa) that binds strongly to laminin. Attachment of Lsa24 to laminin was specific, dose dependent, and saturable. Laminin oxidation by sodium metaperiodate reduced the protein-laminin interaction in a concentration-dependent manner, indicating that laminin sugar moieties are crucial for this interaction. Triton X-114-solubilized extract of L. interrogans and phase partitioning showed that Lsa24 was exclusively in the detergent phase, indicating that it is a component of the leptospiral membrane. Moreover, Lsa24 partially inhibited leptospiral adherence to immobilized laminin. This newly identified membrane protein may play a role in mediating adhesion of L. interrogans to the host. To our knowledge, this is the first leptospiral adhesin with laminin-binding properties reported to date.
Insights
Researchers identified Lsa24, a novel leptospiral surface adhesin. This protein binds strongly to laminin, a key extracellular matrix component, potentially aiding pathogenic leptospires in host tissue colonization.
Area of Science:
- Microbiology
- Pathogen-Host Interactions
- Molecular Biology
Background:
- Pathogenic leptospires disseminate to host organs after infection.
- Spirochetes utilize surface proteins to bind extracellular matrix (ECM) components, facilitating tissue colonization.
- Understanding these interactions is crucial for developing anti-leptospirosis strategies.
Purpose of the Study:
- To investigate the interaction of Leptospira interrogans outer membrane proteins with ECM components.
- To identify novel adhesins involved in leptospiral pathogenesis.
- To characterize the binding properties of identified adhesins.
Main Methods:
- Cloning and expression of six putative leptospiral outer membrane proteins.
- Purification using metal affinity chromatography and characterization by circular dichroism.
- Binding assays to evaluate adherence to laminin, collagen types I and IV, and fibronectin variants.
Main Results:
- A novel leptospiral protein, Lsa24 (encoded by LIC12906), was identified and shown to bind strongly to laminin.
- Lsa24-laminin interaction was specific, dose-dependent, and saturable, with sugar moieties on laminin being critical.
- Lsa24 is a membrane component and partially inhibited leptospiral adherence to laminin, suggesting a role in pathogenesis.
Conclusions:
- Lsa24 is the first identified leptospiral adhesin with laminin-binding properties.
- This protein likely contributes to the adhesion of Leptospira interrogans to host tissues.
- Lsa24 represents a potential target for therapeutic interventions against leptospirosis.
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