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Characterization of outer membranes isolated from Treponema pallidum, the syphilis spirochete
J D Radolf1, E J Robinson, K W Bourell
1Department of Internal Medicine, U.T. Southwestern Medical Center, Dallas 75235, USA.
Abstract:
Previous freeze-fracture electron microscopy (EM) studies have shown that the outer membrane (OM) of Treponema pallidum contains sparse transmembrane proteins. One strategy for molecular characterization of these rare OM proteins involves isolation of T. pallidum OMs. Here we describe a simple and extremely gentle method for OM isolation based upon isopycnic sucrose density gradient ultracentrifugation of treponemes following plasmolysis in 20% sucrose. Evidence that T. pallidum OMs were isolated included (i) the extremely low protein/lipid ratio of the putative OM fraction, (ii) a paucity of antigenic and/or biochemical markers for periplasmic, cytoplasmic membrane, and cytosolic compartments, and (iii) freeze-fracture EM demonstrating that the putative OMs contained intramembranous particles highly similar in size and density to those in native T. pallidum OMs. Sodium dodecyl sulfate-polyacrylamide gel electrophoresis analysis revealed that the OMs contained a relatively small number of treponemal proteins, including several which did not appear to correspond to previously characterized T. pallidum antigens. Interestingly, these candidate rare OM proteins reacted poorly with syphilitic sera as determined by both conventional immunoblotting and enhanced chemiluminescence. Compared with whole cells, T. pallidum OMs were deficient in cardiolipin, the major lipoidal antigen reactive with antibodies in syphilitic sera. Also noteworthy was that other lipoidal constituents of OMs, including the recently discovered glycolipids, did not react with human syphilitic sera. These latter observations suggest that the poor antigenicity of virulent T. pallidum is a function of both the lipid composition and the low protein content of its OM.
Insights
A new gentle method isolates Treponema pallidum outer membranes (OMs). This aids studying rare OM proteins and reveals OMs have low protein and specific lipid content, contributing to low antigenicity in syphilis.
Area of Science:
- Microbiology
- Cell Biology
- Immunology
Background:
- Treponema pallidum outer membrane (OM) has sparse transmembrane proteins.
- Molecular characterization requires isolating T. pallidum OMs.
Purpose of the Study:
- Describe a gentle method for T. pallidum OM isolation.
- Characterize the protein and lipid composition of isolated OMs.
- Investigate the antigenicity of T. pallidum OMs.
Main Methods:
- Plasmolysis of treponemes in 20% sucrose.
- Isopycnic sucrose density gradient ultracentrifugation for OM isolation.
- Freeze-fracture electron microscopy, SDS-PAGE, immunoblotting, and chemiluminescence for analysis.
Main Results:
- Isolated OMs showed a low protein/lipid ratio and lacked markers of other cellular compartments.
- Freeze-fracture EM confirmed particle density similar to native OMs.
- OMs contained few proteins, some novel, with poor reactivity to syphilitic sera.
- OMs were deficient in cardiolipin and other reactive lipoidal constituents.
Conclusions:
- The developed method enables gentle isolation of T. pallidum OMs.
- The low protein and specific lipid composition of T. pallidum OMs contribute to its poor antigenicity.
- Further research into rare OM proteins is facilitated by this isolation technique.