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Mycobacteria glycolipids as potential pathogenicity effectors: alteration of model and natural membranes
Abstract:
Four mycobacterial wall glycolipids were tested for their effects on phospholipidic liposome organization and passive permeability and on oxidative phosphorylation of isolated mitochondria. From fluorescence polarization of diphenylhexatriene performed on liposomes it was concluded that the two trehalose derivatives (dimycoloyltrehalose and polyphthienoyltrehalose) rigidified the fluid state of liposomes, the triglycosyl phenolphthiocerol slightly fluidized the gel state, while the peptidoglycolipid ("apolar" mycoside C) just shifted the phase transition temperature upward. Dimycoloyltrehalose was without effect on liposome passive permeability, as estimated from dicarboxyfluorescein leak rates, and polyphthienoyltrehalose and triglycosyl phenolphthiocerol slightly decreased leaks, while mycoside C dramatically increased leaks. Activity of these lipids on mitochondrial oxidative phosphorylation was examined. The two trehalose derivatives have been tested previously: both had the same type of inhibitory activity, dimycoloyltrehalose being the most active. Triglycosyl phenolphthiocerol was inactive. Mycoside C was very active, with effects resembling those of classical uncouplers: this suggested that its activity on mitochondria was related to its effect on permeability. All these membrane alterations were called nonspecific because it is likely that they result from nonspecific lipid-lipid interactions, and not from recognition between specific molecular structures. Such nonspecific interactions could be at the origin of some of the effects of mycobacteria glycolipids on cells of the immune system observed in the last few years.
Insights
Mycobacterial glycolipids alter liposome organization and permeability. Some glycolipids affect mitochondrial oxidative phosphorylation, suggesting nonspecific interactions may influence immune cell responses.
Area of Science:
- Biochemistry
- Membrane Biophysics
- Immunology
Background:
- Mycobacterial cell walls contain complex glycolipids.
- These glycolipids are implicated in host-pathogen interactions.
- Understanding their membrane effects is crucial.
Purpose of the Study:
- To investigate the impact of four mycobacterial glycolipids on liposome properties.
- To assess their effects on mitochondrial oxidative phosphorylation.
- To explore the mechanisms behind these interactions.
Main Methods:
- Liposome preparation and characterization.
- Fluorescence polarization using diphenylhexatriene.
- Dicarboxyfluorescein (DCF) leakage assays.
- Mitochondrial oxidative phosphorylation assays.
Main Results:
- Trehalose derivatives rigidified liposomes; triglycosyl phenolphthiocerol slightly fluidized.
- Mycoside C significantly increased liposome permeability.
- Dimycoloyltrehalose and polyphthienoyltrehalose inhibited mitochondrial respiration, while mycoside C acted as an uncoupler.
Conclusions:
- Mycobacterial glycolipids induce nonspecific membrane alterations.
- These changes in liposome and mitochondrial membranes may explain observed immune effects.
- Nonspecific lipid-lipid interactions are likely key mechanisms.