Fatty acid synthesis and pyruvate metabolism pathways remain active in dihydroartemisinin induced dormant ring stages of Plasmodium falciparum


Autoria(s): Chen, Nanhua; LaCrue, Alexis N.; Teuscher, Franka; Waters, Norman C.; Gatton, Michelle L.; Kyle, Dennis E.; Cheng, Qin
Data(s)

01/08/2014

Resumo

Artemisinin (ART) based combination therapy (ACT) is used as the first line treatment of uncomplicated falciparum malaria worldwide. However, despite high potency and rapid action there is a high rate of recrudescence associated with ART monotherapy or ACT long before the recent emergence of ART resistance. ART induced ring stage dormancy and recovery has been implicated as possible cause of recrudescence; however, little is known about the characteristics of dormant parasites including whether dormant parasites are metabolically active. We investigated the transcription of 12 genes encoding key enzymes in various metabolic pathways in P. falciparum during dihydroartemisinin (DHA) induced dormancy and recovery. Transcription analysis showed an immediate down regulation for 10 genes following exposure to DHA, but continued transcription of 2 genes encoding apicoplast and mitochondrial proteins. Transcription of several additional genes encoding apicoplast and mitochondrial proteins, particularly genes encoding enzymes in pyruvate metabolism and fatty acid synthesis pathways, were also maintained. Additions of inhibitors for biotin acetyl CoA carbozylase and enoyl-acyl carrier reductase of the fatty acid synthesis pathways delayed the recovery of dormant parasites by 6 and 4 days, respectively following DHA treatment. Our results demonstrate most metabolic pathways are down regulated in DHA induced dormant parasites. In contrast fatty acid and pyruvate metabolic pathways remain active. These findings highlight new targets to interrupt recovery of parasites from ART-induced dormancy and to reduce the rate of recrudescence following ART treatment.

Formato

application/pdf

Identificador

http://eprints.qut.edu.au/72551/

Publicador

American Society for Microbiology

Relação

http://eprints.qut.edu.au/72551/2/72551.pdf

DOI:10.1128/AAC.02647-14

Chen, Nanhua, LaCrue, Alexis N., Teuscher, Franka, Waters, Norman C., Gatton, Michelle L., Kyle, Dennis E., & Cheng, Qin (2014) Fatty acid synthesis and pyruvate metabolism pathways remain active in dihydroartemisinin induced dormant ring stages of Plasmodium falciparum. Antimicrobial Agents and Chemotherapy, 58(8), pp. 4773-4781.

NIH/R01AI058973

http://purl.org/au-research/grants/NHMRC/1021273

Direitos

Copyright 2014 American Society for Microbiology

Fonte

Faculty of Health; School of Public Health & Social Work

Palavras-Chave #060104 Cell Metabolism #060405 Gene Expression (incl. Microarray and other genome-wide approaches) #110803 Medical Parasitology #Plasmodium falciparum #artemisinin #dormant #metabolic activity #gene expression #pyruvate metabolism #fatty acid synthesis
Tipo

Journal Article