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Effect of phosphocreatine on H+ extrusion, pHi and dimorphism in Candida albicans
Nikhat Manzoor1, M Amin, Luqman A Khan
1Department of Biosciences, Jamia Millia Islamia, New Delhi 110025, India.
Abstract:
Candida albicans is an opportunistic pathogen. Its proliferation in human hosts is believed to be controlled by immunologic mechanisms. The plasma membrane of the fungus possesses an H(+)-ATPase (PM-ATPase) which actively extrudes protons to generate an electrochemical gradient which is used in co-transport of nutrients. This ATPase is associated with the growth, dimorphism and pathogenicity of the fungus. The physiological concentration of phosphocreatine (PCr) is 20-35 mM in skeletal muscles. H(+)-extrusion in Candida cells was strongly inhibited by PCr; 44% at 20 mM and 69% at 40 mM. H(+)-extrusion was stimulated 6.2-fold in the presence of 10 mM glucose. This glucose stimulated extrusion was inhibited significantly by PCr; 36% at 20 mM and 53% at 40 mM. The intracellular pH pattern of cells destined to differentiate was greatly altered in the presence of PCr. Evagination time for control cells was between 90-120 min. PCr, delayed dimorphism, reduced the population of cells differentiating to hyphae and also reduced the length of hyphae after each time interval. Only 60% differentiation was observed with 10 mM PCr and 40% for higher PCr concentration even after 210 min. Direct interaction of PM-ATPase and PCr has been demonstrated by difference spectrum measurement employing stopped flow spectrophotometer. It can be concluded that PCr may be playing a significant role in checking growth and pathogenesis of C. albicans.
Insights
Phosphocreatine (PCr) inhibits proton extrusion by Candida albicans plasma membrane H(+)-ATPase (PM-ATPase). This finding suggests PCr may play a role in controlling fungal growth and pathogenesis.
Area of Science:
- Mycology
- Biochemistry
- Pathogen Biology
Background:
- Candida albicans is an opportunistic fungal pathogen.
- Its proliferation is regulated by host immune mechanisms.
- The fungal plasma membrane H(+)-ATPase (PM-ATPase) is crucial for nutrient transport, growth, dimorphism, and pathogenicity.
Purpose of the Study:
- To investigate the effect of phosphocreatine (PCr) on Candida albicans proton extrusion mediated by PM-ATPase.
- To determine if PCr influences fungal dimorphism and pathogenicity.
Main Methods:
- Stopped-flow spectrophotometry was used to measure H(+) extrusion.
- Experiments involved varying concentrations of PCr and glucose.
- Cell differentiation and hyphal growth were monitored over time.
Main Results:
- PCr significantly inhibited H(+) extrusion by PM-ATPase in a dose-dependent manner.
- Glucose-stimulated H(+) extrusion was also inhibited by PCr.
- PCr delayed fungal dimorphism, reduced the percentage of differentiating cells, and decreased hyphal length.
- Direct interaction between PM-ATPase and PCr was confirmed.
Conclusions:
- PCr directly interacts with and inhibits the Candida albicans PM-ATPase.
- PCr may serve as a host-derived factor that limits C. albicans growth and pathogenesis by modulating PM-ATPase activity and fungal development.
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