The Plasmodium heme detoxification protein functions in mitochondrial protein synthesis
Abstract
Abstract Malaria blood-stage parasites digest ~80% of host cell hemoglobin within a degradative vacuole, releasing heme that is detoxified by sequestration into hemozoin crystals. Although essential for survival and a validated drug target, the mechanisms of heme biomineralization remain unclear. Here, we study the parasite’s Heme Detoxification Protein (HDP), previously proposed to mediate hemozoin formation, using genetic, microscopic, bioenergetic, and proteomic approaches. Endogenous tagging reveals that HDP localizes to the mitochondrion, not the digestive vacuole. HDP inactivation has no effect on heme biomineralization, but causes mitochondrial depolarization, proguanil hypersensitivity, and developmental arrest, which is rescued by bypassing respiratory-chain-dependent pyrimidine biosynthesis. HDP knockout abolishes mitochondrial electron flow due to loss of complexes III and IV, consistent with impaired mitochondrial protein synthesis. Integration of structural modelling with quantitative proteomics places HDP within the mitoribosomal large subunit. Here, we show that HDP is essential for mitochondrial function and does not contribute to hemozoin formation.
Article Details
Authors (12)
Louis Sarrazin
Melissa R. Rosenthal
Joachim Kloehn
Tanja Ziesmann
Yasmin Schmitz
Anna-Lena Sandtmann
Robert Domènech-Eres
Katharina Scholz-Höhn
Coralie Boulet
Ute Distler
Daniel E. Goldberg
Joachim M. Matz