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遗传筛选揭示了血红素代谢在青蒿素敏感性中的核心作用。

Genetic screens reveal a central role for heme metabolism in artemisinin susceptibility.

机构信息

Whitehead Institute for Biomedical Research, Cambridge, MA, USA.

Wellcome Centre for Molecular Parasitology, Institute of Infection, Immunity & Inflammation, University of Glasgow, Glasgow, UK.

出版信息

Nat Commun. 2020 Sep 23;11(1):4813. doi: 10.1038/s41467-020-18624-0.

Abstract

Artemisinins have revolutionized the treatment of Plasmodium falciparum malaria; however, resistance threatens to undermine global control efforts. To broadly explore artemisinin susceptibility in apicomplexan parasites, we employ genome-scale CRISPR screens recently developed for Toxoplasma gondii to discover sensitizing and desensitizing mutations. Using a sublethal concentration of dihydroartemisinin (DHA), we uncover the putative transporter Tmem14c whose disruption increases DHA susceptibility. Screens performed under high doses of DHA provide evidence that mitochondrial metabolism can modulate resistance. We show that disrupting a top candidate from the screens, the mitochondrial protease DegP2, lowers porphyrin levels and decreases DHA susceptibility, without significantly altering parasite fitness in culture. Deleting the homologous gene in P. falciparum, PfDegP, similarly lowers heme levels and DHA susceptibility. These results expose the vulnerability of heme metabolism to genetic perturbations that can lead to increased survival in the presence of DHA.

摘要

青蒿素的出现彻底改变了恶性疟原虫疟疾的治疗方法;然而,耐药性的出现有可能破坏全球的控制努力。为了广泛探索顶复线虫寄生虫中的青蒿素敏感性,我们利用最近为刚地弓形虫开发的基于基因组规模的 CRISPR 筛选来发现增敏和脱敏突变。我们使用亚致死浓度的二氢青蒿素(DHA),发现了假定的转运蛋白 Tmem14c,其破坏会增加 DHA 的敏感性。在高剂量 DHA 下进行的筛选提供了证据,表明线粒体代谢可以调节耐药性。我们表明,破坏筛选出的一个主要候选基因,即线粒体蛋白酶 DegP2,会降低卟啉水平并降低 DHA 的敏感性,但在培养中对寄生虫的适应性没有显著影响。在恶性疟原虫中删除同源基因 PfDegP 也会降低血红素水平和 DHA 的敏感性。这些结果揭示了血红素代谢对遗传干扰的脆弱性,这种干扰可能会导致在 DHA 存在下的生存能力提高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b77d/7511413/c9795279eaab/41467_2020_18624_Fig1_HTML.jpg

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