ID | 119089 |
Title Alternative | Plasmodium MQO Functions in Place of Mitochondrial MDH
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Author |
Ito, Takeshi
Tokushima University
Kajita, Sayaka
Tokushima University
Fujii, Minori
Tokushima University
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Keywords | MQO
Plasmodium
energy metabolism
heterologous gene expression
mitochondria
yeast
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Content Type |
Journal Article
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Description | The emergence of drug-resistant variants of malaria-causing Plasmodium parasites is a life-threatening problem worldwide. Investigation of the physiological function of individual parasite proteins is a prerequisite for a deeper understanding of the metabolic pathways required for parasite survival and therefore a requirement for the development of novel antimalarials. A Plasmodium membrane protein, malate-quinone oxidoreductase (MQO), is thought to contribute to the tricarboxylic acid (TCA) cycle and the electron transport chain (ETC) and is an antimalarial drug target. However, there is little information on its expression and function. Here, we investigated the function of Plasmodium falciparum MQO (PfMQO) in mitochondria using a yeast heterologous expression system. Using a yeast deletion mutant of mitochondrial malate dehydrogenase (MDH1), which is expected to be functionally similar to MQO, as a background strain, we successfully constructed PfMQO-expressing yeast. We confirmed that expression of PfMQO complemented the growth defect of the MDH1 deletion, indicating that PfMQO can adopt the metabolic role of MDH1 in energy transduction for growth in the recombinant yeast. Analysis of cell fractions confirmed that PfMQO was expressed and enriched in yeast mitochondria. By measuring MQO activity, we also confirmed that PfMQO expressed in yeast mitochondria was active. Measurement of oxygen consumption rates showed that mitochondrial respiration was driven by the TCA cycle through PfMQO. In addition, we found that MQO activity was enhanced when intact mitochondria were sonicated, indicating that the malate binding site of PfMQO is located facing the mitochondrial matrix.
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Journal Title |
Microbiology Spectrum
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ISSN | 21650497
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NCID | AA12883845
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Publisher | American Society for Microbiology
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Volume | 11
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Issue | 3
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Start Page | e00168-23
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Published Date | 2023-04-10
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Rights | This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/).
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language |
eng
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Publisher
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departments |
Institute of Advanced Medical Sciences
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