Oxidative stress-driven enhanced iron production and scavenging through Ferroportin reorientation worsens anemia in antimony-resistant Leishmania donovani infection.

IF 4.9 1区 医学 Q1 MICROBIOLOGY PLoS Pathogens Pub Date : 2025-01-31 eCollection Date: 2025-01-01 DOI:10.1371/journal.ppat.1012858
Souradeepa Ghosh, Krishna Vamshi Chigicherla, Shirin Dasgupta, Yasuyuki Goto, Budhaditya Mukherjee
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Abstract

Despite the withdrawal of pentavalent-antimonials in treating Visceral leishmaniasis from India, recent clinical isolates of Leishmania donovani (LD) exhibit unresponsiveness towards pentavalent-antimony (LD-R). This antimony-unresponsiveness points towards a genetic adaptation that underpins LD-R's evolutionary persistence and dominance over sensitive counterparts (LD-S). This study highlights how LD evolutionarily tackled antimony exposure and gained increased potential of scavenging host-iron within its parasitophorous vacuoles (PV) to support its aggressive proliferation. Even though anti-leishmanial activity of pentavalent antimonials relies on triggering oxidative outburst, LD-R exhibits a surprising strategy of promoting reactive oxygen species (ROS) generation in infected macrophages. An inherent metabolic shift from glycolysis to Pentose Phosphate shunt allows LD-R to withstand elevated ROS by sustaining heightened levels of NADPH. Elevated ROS levels on the other hand trigger excess iron production, and LD-R capitalizes on this surplus iron by selectively reshuffling macrophage-surface iron exporter, Ferroportin, around its PV thereby gaining a survival edge as a heme-auxotroph. Higher iron utilization by LD-R leads to subsequent iron insufficiency, compensated by increased erythrophagocytosis through the breakdown of SIRPα-CD47 surveillance, orchestrated by a complex interplay of two proteases, Furin and ADAM10. Understanding these mechanisms is crucial for managing LD-R-infections and their associated complications like severe anemia, and may also provide valuable mechanistic insights into understanding drug unresponsiveness developed in other intracellular pathogens that rely on host iron.

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氧化应激驱动的铁生成和通过转运铁蛋白重定向的清除加剧了耐锑利什曼原虫感染的贫血。
尽管在治疗印度内脏利什曼病时停用了五价锑,但最近临床分离的多诺瓦利什曼原虫(LD)对五价锑(LD- r)表现出无反应性。这种锑无反应性指向了一种遗传适应,这种适应支撑了LD-R的进化持久性和对敏感对应物(LD-S)的优势。本研究强调了LD如何通过进化处理锑暴露,并在其寄生液泡(PV)中获得清除宿主铁的潜力,以支持其侵袭性增殖。尽管五价锑的抗利什曼原虫活性依赖于触发氧化爆发,但LD-R在感染巨噬细胞中表现出令人惊讶的促进活性氧(ROS)生成的策略。从糖酵解到戊糖磷酸分流的固有代谢转变允许LD-R通过维持NADPH水平升高来承受升高的ROS。另一方面,ROS水平升高会触发过量的铁生成,LD-R通过选择性地重组巨噬细胞表面铁输出蛋白,从而获得作为血红素营养缺陷细胞的生存优势。LD-R对铁的高利用导致随后的铁不足,通过破坏SIRPα-CD47的监视,通过两种蛋白酶Furin和ADAM10的复杂相互作用,红细胞吞噬能力增加来补偿。了解这些机制对于控制ld - r感染及其相关并发症(如严重贫血)至关重要,也可能为理解其他依赖宿主铁的细胞内病原体产生的药物无反应性提供有价值的机制见解。
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来源期刊
PLoS Pathogens
PLoS Pathogens MICROBIOLOGY-PARASITOLOGY
自引率
3.00%
发文量
598
期刊介绍: Bacteria, fungi, parasites, prions and viruses cause a plethora of diseases that have important medical, agricultural, and economic consequences. Moreover, the study of microbes continues to provide novel insights into such fundamental processes as the molecular basis of cellular and organismal function.
期刊最新文献
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