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使青蒿素耐药性寄生虫能够耐受氧化应激的代谢变化。

Metabolic changes that allow artemisinin-resistant parasites to tolerate oxidative stress.

作者信息

Bonive-Boscan Alejandro David, Acosta Héctor, Rojas Ascanio

机构信息

Centro de Cálculo Científico de la Universidad de Los Andes (CeCalCULA), Universidad de Los Andes (ULA), Mérida, Venezuela.

Max Planck Research Group Evolutionary Cell Biology, Plön, Germany.

出版信息

Front Parasitol. 2024 Sep 4;3:1461641. doi: 10.3389/fpara.2024.1461641. eCollection 2024.

Abstract

Artemisinin-based treatments (ACTs) are the first therapy currently used to treat malaria produced by . However, in recent years, increasing evidence shows that some strains of are less susceptible to ACT in the Southeast Asian region. A data reanalysis of several omics approaches currently available about parasites of that have some degree of resistance to ACT was carried out. The data used were from transcriptomics and metabolomics studies. One mitochondrial carrier of the parasite possibly involved in the mechanisms of tolerance to oxidative stress was modeled and subjected to molecular dockings with citrate and oxoglutarate. An increase in glutathione production was detected, changing the direction of the flux of metabolites in the tricarboxylic acid cycle and boosting the glucose consumed. The models of the mitochondrial carrier, called PfCOCP, show that it may be important in transporting citrate and oxoglutarate from the mitochondrial matrix to the cytosol. If so, it may allow the parasite to tolerate the oxidative stress produced by artemisinin. This analysis shows that may tolerate artemisinin's oxidative stress through metabolic changes not reported before, showing the need for further experimental research on the many metabolic aspects linked to this phenotype.

摘要

以青蒿素为基础的治疗方法(ACTs)是目前用于治疗由……引起的疟疾的首选疗法。然而,近年来,越来越多的证据表明,在东南亚地区,某些……菌株对ACT的敏感性较低。对目前可用的几种关于对ACT有一定抗性的……寄生虫的组学方法进行了数据重新分析。所使用的数据来自转录组学和代谢组学研究。对寄生虫的一种可能参与氧化应激耐受机制的线粒体载体进行了建模,并使其与柠檬酸盐和氧代戊二酸进行分子对接。检测到谷胱甘肽产量增加,改变了三羧酸循环中代谢物的通量方向,并增加了葡萄糖的消耗。这种被称为PfCOCP的线粒体载体模型表明,它在将柠檬酸盐和氧代戊二酸从线粒体基质转运到细胞质中可能很重要。如果是这样,它可能使寄生虫耐受青蒿素产生的氧化应激。这种……分析表明,……可能通过以前未报道的代谢变化来耐受青蒿素的氧化应激。这表明需要对与该表型相关的许多代谢方面进行进一步的实验研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ad3e/11731681/7cf61a9fa915/fpara-03-1461641-g001.jpg

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