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Published on: August 14, 2021
MPL36, a major plasminogen (PLG) receptor in pathogenic Leptospira, has an essential role during infection
Weinan Zhu1, Felipe J Passalia1,2, Camila Hamond1
1Department of Epidemiology of Microbial Diseases, Yale School of Public Health, New Haven, Connecticut, United States of America.
Abstract:
Leptospirosis, a zoonosis with worldwide distribution, is caused by pathogenic spirochetes belonging to the genus Leptospira. Bacterial outer membrane proteins (OMPs), particularly those with surface-exposed regions, play crucial roles in pathogen dissemination and virulence mechanisms. Here we characterized the leptospiral Membrane Protein L36 (MPL36), a rare lipoprotein A (RlpA) homolog with a C-terminal Sporulation related (SPOR) domain, as an important virulence factor in pathogenic Leptospira. Our results confirmed that MPL36 is surface exposed and expressed during infection. Using recombinant MPL36 (rMPL36) we also confirmed previous findings of its high plasminogen (PLG)-binding ability determined by lysine residues of the C-terminal region of the protein, with ability to convert bound-PLG to active plasmin. Using Koch's molecular postulates, we determined that a mutant of mpl36 has a reduced PLG-binding ability, leading to a decreased capacity to adhere and translocate MDCK cell monolayers. Using recombinant protein and mutant strains, we determined that the MPL36-bound plasmin (PLA) can degrade fibrinogen. Finally, our mpl36 mutant had a significant attenuated phenotype in the hamster model for acute leptospirosis. Our data indicates that MPL36 is the major PLG binding protein in pathogenic Leptospira, and crucial to the pathogen's ability to attach and interact with host tissues during infection. The MPL36 characterization contributes to the expanding field of bacterial pathogens that explore PLG for their virulence, advancing the goal to close the knowledge gap regarding leptospiral pathogenesis while offering a novel potential candidate to improve diagnostic and prevention of this important zoonotic neglected disease.
Insights
Leptospira outer membrane protein MPL36 is a key virulence factor, binding plasminogen to aid bacterial adhesion and infection. MPL36
Area of Science:
- Microbiology
- Pathogenesis
- Zoonotic Diseases
Background:
- Leptospirosis is a widespread zoonotic disease caused by Leptospira bacteria.
- Bacterial outer membrane proteins (OMPs) are vital for pathogen virulence.
- MPL36, a rare lipoprotein A homolog, is identified as a significant virulence factor.
Purpose of the Study:
- To characterize the leptospiral Membrane Protein L36 (MPL36) as a virulence factor.
- To investigate MPL36's role in plasminogen binding and its impact on Leptospira pathogenesis.
- To evaluate MPL36 as a potential target for leptospirosis diagnostics and prevention.
Main Methods:
- Characterization of MPL36, a rare lipoprotein A (RlpA) homolog with a C-terminal Sporulation related (SPOR) domain.
- Assessing surface exposure and expression of MPL36 during infection.
- Utilizing recombinant MPL36 (rMPL36) and mpl36 mutant strains for functional analysis.
- Employing Koch's molecular postulates to confirm MPL36's role in virulence.
- Infection studies using the hamster model for acute leptospirosis.
Main Results:
- MPL36 is surface-exposed and expressed during infection, exhibiting high plasminogen (PLG)-binding ability.
- MPL36 facilitates the conversion of bound PLG to active plasmin, which degrades fibrinogen.
- An mpl36 mutant showed reduced PLG binding, decreased adherence, and translocation of MDCK cell monolayers.
- The mpl36 mutant exhibited a significantly attenuated phenotype in the hamster model of leptospirosis.
Conclusions:
- MPL36 is the primary plasminogen-binding protein in pathogenic Leptospira.
- MPL36 is crucial for bacterial attachment to and interaction with host tissues.
- MPL36 represents a novel candidate for improving leptospirosis diagnostics and prevention strategies.

