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Immuno-fluorescence Assay of Leptospiral Surface-exposed Proteins
Published on: July 1, 2011
Immune responses induced by spirochetal outer membrane lipoproteins and glycolipids
Nicolas W J Schröder1, Jana Eckert, Gunthard Stübs
1Department for Dermatology and Allergology, Charité-Universitätsmedizin Berlin, Charitéplatz 1, D-10117 Berlin, Germany.
Abstract:
The class of Spirochetes comprises a wide array of clinically important pathogens, including Treponema pallidum causing syphilis as well as Borrelia burgdorferi, the agent of Lyme disease (LD). Diseases caused by spirochetes are characterized by specific sequelae of host reactions, and also by characteristic antibody response patterns. Over the last decades, research on the interaction of spirochetes with the host's immune system had a strong emphasis on outer membrane lipoproteins. In fact, these structures have been convincingly shown to activate immune cells via CD14 and Toll-like receptor (TLR)-2, and recent data also indicate an interaction with lipopolysaccharide (LPS)-binding protein (LBP). In particular, the interaction of B. burgdorferi with TLR-2 could not only be demonstrated in mice, but was also supported by data showing that genetic variants of TLR-2 in humans influenced the clinical course of LD. However, there is increasing evidence that next to lipoproteins, glycolipids may also play an important role in responses of the immune system towards spirochetes. Diacylglycerol-containing glycolipids exhibiting similarities with lipoteichoic acid (LTA) of Gram-positive bacteria have been demonstrated in various Treponema species, whereas LPS-like glycolipids have been shown to be present in Leptospira. Treponema glycolipids, comparably to lipoproteins and LTA, interact with LBP, CD14 and TLRs. In contrast, complex glycolipids of high molecular weight could not be demonstrated in Borrelia, whereas these bacteria exhibit a number of unique low molecular weight glycolipids. Some of these glycolipids cause strong immediate immune responses, while others appear to be potent antigens for induction of an adaptive immune response. This review summarizes data obtained so far on amphiphilic and hydrophobic molecules from spirochetes regarding structure and influence on innate as well as adaptive immune responses.
Insights
Spirochetes, like those causing Lyme disease, activate immune responses through lipoproteins and increasingly recognized glycolipids. These molecules influence both immediate and adaptive immunity, impacting disease progression.
Area of Science:
- Immunology
- Microbiology
- Molecular Biology
Background:
- Spirochetes are significant human pathogens, including Treponema pallidum (syphilis) and Borrelia burgdorferi (Lyme disease).
- Host immune responses to spirochetes involve characteristic antibody patterns and reactions.
- Research has focused on outer membrane lipoproteins activating immune cells via Toll-like receptor (TLR)-2 and lipopolysaccharide (LPS)-binding protein (LBP).
Purpose of the Study:
- To review the structure and immunomodulatory roles of amphiphilic and hydrophobic molecules from spirochetes.
- To highlight the emerging importance of glycolipids in spirochetal-host immune interactions.
- To compare the immune-activating properties of lipoproteins and glycolipids in spirochetes.
Main Methods:
- Review of existing literature on spirochetal molecules and their interaction with host immune components.
- Analysis of data on the structural characteristics of spirochetal lipoproteins and glycolipids.
- Examination of studies investigating the influence of these molecules on innate and adaptive immune responses.
Main Results:
- Outer membrane lipoproteins are established activators of immune cells through TLR-2 and LBP.
- Glycolipids, similar to lipoteichoic acid (LTA) and LPS, are increasingly recognized for their role in spirochetal immunity.
- Treponema glycolipids interact with LBP, CD14, and TLRs, while Borrelia possesses unique low molecular weight glycolipids with potent immune-stimulating capabilities.
Conclusions:
- Both lipoproteins and glycolipids are critical in modulating host immune responses to spirochetes.
- Spirochetal glycolipids can elicit strong immediate immune reactions and induce adaptive immunity.
- Understanding these molecular interactions is key to comprehending spirochetal pathogenesis and host defense.
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