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Updated: Jul 5, 2026

Immuno-fluorescence Assay of Leptospiral Surface-exposed Proteins
Published on: July 1, 2011
Lsa21, a novel leptospiral protein binding adhesive matrix molecules and present during human infection
Marina V Atzingen1, Angela S Barbosa, Thales De Brito
1Centro de Biotecnologia, Instituto Butantan, Avenida Vital Brazil, 1500, 05503-900, São Paulo, SP, Brazil. m.atzingen@butantan.gov.br
Background:
It has been well documented over past decades that interaction of pathogens with the extracellular matrix (ECM) plays a primary role in host cell attachment and invasion. Adherence to host tissues is mediated by surface-exposed proteins expressed by the microorganisms during infection. The mechanisms by which pathogenic leptospires invade and colonize the host remain poorly understood since few virulence factors contributing to the pathogenesis of the disease have been identified. Whole-genome sequencing analysis of L. interrogans allowed identification of a repertoire of putative leptospiral surface proteins.
Results:
Here, we report the identification and characterization of a new leptospiral protein that exhibits extracellular matrix-binding properties, called as Lsa21 (leptospiral surface adhesin, 21 kDa). Compatible with its role in adhesion, the protein was shown to be surface-exposed by indirect immunofluorescence. Attachment of Lsa21 to laminin, collagen IV, and plasma fibronectin was specific and dose dependent. 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. The gene coding for Lsa21 is present in pathogenic strains belonging to the L. interrogans species but was not found in the saprophytic L. biflexa serovar Patoc strain Patoc 1. Loss of gene expression occurs upon culture attenuation of pathogenic strains. Environmental factors such as osmolarity and temperature affect Lsa21 expression at the transcriptional level. Moreover, anti-Lsa21 serum labeled liver and kidney tissues of human fatal cases of leptospirosis.
Conclusion:
Our data suggest a role of Lsa21 in the pathogenesis of leptospirosis.
Insights
Researchers identified a new leptospiral surface adhesin, Lsa21, which binds to extracellular matrix proteins. This protein is present in pathogenic Leptospira interrogans and may play a role in leptospirosis pathogenesis.
Area of Science:
- Microbiology
- Pathogenesis
- Molecular Biology
Background:
- Pathogen interaction with the extracellular matrix (ECM) is crucial for host cell attachment and invasion.
- Leptospiral pathogenesis mechanisms are poorly understood, with few identified virulence factors.
- Whole-genome sequencing of Leptospira interrogans revealed potential surface proteins.
Purpose of the Study:
- Identify and characterize novel leptospiral surface proteins involved in host interaction.
- Investigate the role of a newly identified protein, Lsa21, in Leptospira pathogenesis.
Main Methods:
- Protein identification and characterization.
- Indirect immunofluorescence to confirm surface exposure.
- Binding assays with ECM components (laminin, collagen IV, fibronectin).
- Gene presence analysis in different Leptospira species and strains.
- Gene expression analysis under varying environmental conditions.
Main Results:
- Identified and characterized Lsa21 (leptospiral surface adhesin, 21 kDa) with ECM-binding properties.
- Lsa21 demonstrated specific, dose-dependent attachment to laminin, collagen IV, and fibronectin.
- Laminin's sugar moieties are critical for Lsa21 interaction.
- Lsa21 gene is present in pathogenic L. interrogans but absent in saprophytic L. biflexa.
- Lsa21 expression is affected by culture attenuation and environmental factors.
- Anti-Lsa21 antibodies labeled human liver and kidney tissues from leptospirosis cases.
Conclusions:
- Lsa21 is a surface-exposed protein with extracellular matrix-binding capabilities.
- Lsa21 is specifically found in pathogenic Leptospira strains and is associated with host tissues.
- Data suggest Lsa21 plays a significant role in the pathogenesis of leptospirosis.
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