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Pumped up: Reflections on PfATP6 as the target for artemisinins

机译:激增:对PfATP6作为青蒿素靶标的思考

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Sarco/endoplasmic reticulum Ca2+-ATPases (SERCAs) are increasingly being studied for therapeutic interventions in the fields of cancer, heart disease, and infection. Our suggestion a decade ago that artemisinins (the most important antimalarial class) act by inhibiting parasite SERCAs (PfATP6 and orthologues) expressed in Xenopus oocytes stimulated new directions for research away from conventional site-of-action studies of the food vacuole of the parasite. There is, however, still no consensus on how artemisinins act. We have continued to explore the hypothesis that PfATP6 is a key target by confirming that artemisinins inhibit Plasmodium falciparum PfATP6 when it is expressed in yeast and that it is essential for survival of pathogenic asexual-stage parasites. These advances are discussed with their implications for our understanding of how parasites regulate calcium in different stages of asexual development and for the global challenge posed by artemisinin resistance.
机译:越来越多地研究Sarco /内质网Ca2 + -ATPase(SERCA)在癌症,心脏病和感染领域的治疗干预措施。十年前,我们的建议是青蒿素(最重要的抗疟药类)通过抑制非洲爪蟾卵母细胞中表达的寄生虫SERCA(PfATP6和直向同源物)发挥作用,从而激发了新的研究方向,摆脱了对寄生虫食物液泡的常规作用部位研究。然而,关于青蒿素如何发挥作用尚无共识。通过确认青蒿素在酵母中表达后抑制青蒿素抑制恶性疟原虫PfATP6,并且它对于病原性无性阶段寄生虫的生存至关重要,我们继续探索PfATP6是关键目标的假设。对这些进展进行了讨论,其意义在于我们对寄生虫如何在无性发育的不同阶段调节钙的理解以及对青蒿素耐药性造成的全球挑战的了解。

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