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Updated: Jul 3, 2026

Immuno-fluorescence Assay of Leptospiral Surface-exposed Proteins
Published on: July 1, 2011
Calcium binds to leptospiral immunoglobulin-like protein, LigB, and modulates fibronectin binding
Yi-Pin Lin1, Rajeev Raman2, Yogendra Sharma2
1College of Veterinary Medicine, Cornell University, Ithaca, New York 14853 and the.
Insights
Pathogenic Leptospira bacteria use LigB proteins to attach to host cells. This study reveals LigB is a novel calcium-binding protein crucial for bacterial adhesion and leptospirosis pathogenesis.
Area of Science:
- Microbiology
- Structural Biology
- Biochemistry
Background:
- Pathogenic *Leptospira* species utilize immunoglobulin-like proteins (LigA and LigB) as adhesins for host cell attachment.
- The precise mechanism of LigA/LigB involvement in pathogenesis remains largely unknown.
Purpose of the Study:
- To investigate the role of calcium ions in the function of *Leptospira* immunoglobulin-like protein LigB.
- To elucidate the structural and functional impact of calcium binding on LigB.
Main Methods:
- Inductively coupled plasma optical emission spectrometry, energy dispersive spectrometry, (45)Ca overlay, and mass spectrometry were used to detect calcium binding.
- Isothermal titration calorimetry and calcium competition assays determined the dissociation constant for calcium.
- Circular dichroism (CD) and fluorescence spectroscopy analyzed conformational changes upon calcium binding.
- Thermal unfolding monitored by CD and differential scanning calorimetry assessed protein stabilization.
Main Results:
- LigB's central domain (LigBCen2) was identified as a novel calcium-binding protein, binding four calcium ions with a dissociation constant of 7 µM.
- Calcium binding induced significant conformational changes, stabilizing the protein and increasing its beta-sheet content.
- Calcium binding enhanced LigBCen2's interaction with fibronectin, suggesting a role in bacterial adhesion.
Conclusions:
- LigB is a novel bacterial calcium-binding protein.
- Calcium binding is essential for LigB's structural integrity and function in fibronectin binding.
- Calcium-mediated LigB function likely plays a critical role in the pathogenesis of leptospirosis.
Abstract:
Pathogenic Leptospira spp. express immunoglobulin-like proteins, LigA and LigB, which serve as adhesins to bind to extracellular matrices and mediate their attachment on host cells. However, nothing is known about the mechanism by which these proteins are involved in pathogenesis. We demonstrate that LigBCen2 binds Ca(2+), as evidenced by inductively coupled plasma optical emission spectrometry, energy dispersive spectrometry, (45)Ca overlay, and mass spectrometry, although there is no known motif for Ca(2+) binding. LigBCen2 binds four Ca(2+) as determined by matrix-assisted laser desorption ionization time-of-flight mass spectrometry. The dissociation constant, K(D), for Ca(2+) binding is 7 mum, as measured by isothermal titration calorimetry and calcium competition experiments. The nature of the Ca(2+)-binding site in LigB is possibly similar to that seen in the betagamma-crystallin superfamily, since structurally, both families of proteins possess the Greek key type fold. The conformation of LigBCen2 was significantly influenced by Ca(2+) binding as shown by far- and near-UV CD and by fluorescence spectroscopy. In the apo form, the protein appears to be partially unfolded, as seen in the far-UV CD spectrum, and upon Ca(2+) binding, the protein acquires significant beta-sheet conformation. Ca(2+) binding stabilizes the protein as monitored by thermal unfolding by CD (50.7-54.8 degrees C) and by differential scanning calorimetry (50.0-55.7 degrees C). Ca(2+) significantly assists the binding of LigBCen2 to the N-terminal domain of fibronectin and perturbs the secondary structure, suggesting the involvement of Ca(2+) in adhesion. We demonstrate that LigB is a novel bacterial Ca(2+)-binding protein and suggest that Ca(2+) binding plays a pivotal role in the pathogenesis of leptospirosis.
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