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Published on: August 28, 2018
Involvement of lipids in ferriprotoporphyrin IX polymerization in malaria
1Department of Internal Medicine, Saint Louis University School of Medicine, 1402 South Grand Boulevard, Saint Louis, MO 63104, USA. fitchcd@slu.edu
Abstract:
Approximately 70% of the initial ferriprotoporphyrin IX polymerizing activity in cell-free preparations of erythrocytes infected with Plasmodium berghei was recovered in a chloroform extract. No polymerizing activity remained in the residue. In studies to identify substances that promote FP polymerization, arachidonic, linoleic, oleic, and palmitoleic acids, 1-mono- and di-oleoylglycerol, and the detergents, SDS, Tween 80, and n-octyl-glucopyranoside, were active. Tri-oleoylglycerol, cholesterol, di-oleoylphosphatidylethanolamine, and stearic and palmitic acids were inactive. The model lipid, mono-oleoylglycerol (250 nmol), co-precipitated with FP from a 0.09 M acetate medium at pH 5 and promoted the polymerization of 215 nmol (61%) of the ferriprotoporphyrin IX in the precipitate during a 24-h incubation at 37 degrees C. Polymerization was maximal at pH 5, it was approximately linear for 2 h, and it continued at a decreasing rate for 24 h. The polymer contained exclusively ferriprotoporphyrin IX (97+/-1.3%, mean+/-S.E., n=4) and exhibited the solubility and the electronic absorption and infrared spectral characteristics of the sequestered ferriprotoporphyrin IX of hemozoin. Detergents presumably promote polymerization in an acid medium by helping to dissolve monomeric FP. We suggest that unsaturated lipids co-precipitate with FP in the parasite's acidic food vacuole and also dissolve sufficient monomeric FP to allow polymerization.
Insights
Certain lipids and detergents promote ferriprotoporphyrin IX polymerization in malaria parasites. Unsaturated lipids may facilitate this process within the parasite
Area of Science:
- Biochemistry
- Parasitology
- Molecular Biology
Background:
- Ferriprotoporphyrin IX (FP) polymerization is a key target for antimalarial drugs.
- Understanding the factors influencing FP polymerization is crucial for developing new therapies.
Purpose of the Study:
- To identify substances that promote ferriprotoporphyrin IX polymerization in Plasmodium berghei.
- To elucidate the mechanism by which these substances facilitate FP polymerization.
Main Methods:
- Chloroform extraction of infected erythrocytes to isolate polymerizing activity.
- In vitro assays using various lipids and detergents to test their effect on FP polymerization.
- Characterization of the resulting polymer using spectroscopic and solubility methods.
Main Results:
- Approximately 70% of FP polymerizing activity was recovered in a chloroform extract.
- Unsaturated fatty acids (arachidonic, linoleic, oleic) and mono-/di-acylglycerols significantly promoted FP polymerization.
- Mono-oleoylglycerol co-precipitated with FP and promoted 61% polymerization at pH 5.
Conclusions:
- Unsaturated lipids and certain detergents can promote ferriprotoporphyrin IX polymerization.
- These substances likely act by dissolving monomeric FP, facilitating its aggregation into hemozoin within the parasite's acidic food vacuole.
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