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Updated: Aug 10, 2026

Immuno-fluorescence Assay of Leptospiral Surface-exposed Proteins
Published on: July 1, 2011
Variable small protein (Vsp)-dependent and Vsp-independent pathways for glycosaminoglycan recognition by relapsing
L Magoun1, W R Zückert, D Robbins
1Department of Molecular Genetics and Microbiology, University of Massachusetts Medical School, 55 Lake Avenue North, Worcester, MA 01655, USA.
Abstract:
Tick-borne relapsing fever, caused by pathogenic Borrelia such as B. hermsii and B. turicatae, features recurrent episodes of bacteraemia, each of which is caused by a population of spirochaetes that expresses a different variable major protein. Relapsing fever is also associated with the infection of a variety of tissues, such as the central nervous system. In this study, we show that glycosaminoglycans (GAGs) mediate the attachment of relapsing fever spirochaetes to mammalian cells. B. hermsii strain DAH bound to immobilized heparin, and heparin and dermatan sulphate blocked bacterial binding to host cells. Bacterial binding was diminished by inhibition of host cell GAG synthesis or sulphation, or by the enzymatic removal of GAGs. GAGs mediated the attachment of relapsing fever spirochaetes to potentially relevant target cells, such as endothelial and glial cells. B. hermsii was able to attach to GAGs independently of variable major proteins, because strains expressing the variable major proteins Vsp33, Vlp7 or no variable major protein at all each recognized GAGs. Nevertheless, we found that a variable major protein of B. turicatae directly promoted GAG binding by this relapsing fever spirochaete. B. turicatae strain Oz1 serotype B, which expresses the variable major protein VspB, bound to GAGs more efficiently than did B. turicatae Oz1 serotype A, which expresses VspA. Recombinant VspB, but not VspA, bound to heparin and dermatan sulphate. Previous studies have shown that strain Oz1 serotype B grows to higher concentrations in the blood than does Oz1 serotype A. Thus, relapsing fever spirochaetes have the potential to express Vsp-dependent and Vsp-independent GAG-binding activities and, for one pair of highly related B. turicatae strains, differences in GAG binding correlate with differences in tissue tropism.
Insights
Glycosaminoglycans (GAGs) mediate tick-borne relapsing fever spirochaete attachment to host cells. This binding can be independent of variable major proteins or protein-dependent, influencing tissue tropism.
Area of Science:
- Microbiology
- Cell Biology
- Infectious Diseases
Background:
- Tick-borne relapsing fever is caused by Borrelia species, leading to recurrent bacteremia and potential CNS infection.
- Spirochaetes express variable major proteins (VMPs) that change during infection.
- The mechanisms of Borrelia attachment to host tissues are not fully understood.
Purpose of the Study:
- To investigate the role of glycosaminoglycans (GAGs) in the attachment of relapsing fever spirochaetes to mammalian cells.
- To determine if VMPs influence GAG binding in Borrelia species.
Main Methods:
- Studied binding of Borrelia hermsii and Borrelia turicatae to immobilized GAGs (heparin, dermatan sulfate).
- Assessed the effect of inhibiting host cell GAG synthesis or enzymatic removal of GAGs on bacterial attachment.
- Examined GAG binding by Borrelia strains expressing different VMPs or no VMPs.
- Tested recombinant VMPs for GAG binding activity.
Main Results:
- GAGs mediate the attachment of relapsing fever spirochaetes to mammalian cells, including endothelial and glial cells.
- Borrelia hermsii attached to GAGs independently of VMPs.
- A specific VMP (VspB) of Borrelia turicatae directly promoted GAG binding.
- Differences in GAG binding correlated with differences in tissue tropism between B. turicatae strains.
Conclusions:
- Relapsing fever spirochaetes utilize both VMP-dependent and VMP-independent mechanisms to bind GAGs.
- GAG-mediated attachment is crucial for spirochaete interaction with host cells.
- Differences in GAG binding may explain variations in tissue tropism and disease severity.
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