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A Cytoplasmic Heme Sensor Illuminates the Impacts of Mitochondrial and Vacuolar Functions and Oxidative Stress on Heme-Iron Homeostasis in Cryptococcus neoformans

机译:一种细胞质血红素传感器照亮线粒体和真空功能和氧化胁迫对血红素铁稳态的影响,在灌注粒细胞新族裔中

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摘要

Invasive fungal diseases are increasing in frequency, and new drug targets and antifungal drugs are needed to bolster therapy. The mechanisms by which pathogens obtain critical nutrients such as iron from heme during host colonization represent a promising target for therapy. In this study, we employed a fluorescent heme sensor to investigate heme homeostasis in Cryptococcus neoformans. We demonstrated that endocytosis is a key aspect of heme acquisition and that vacuolar and mitochondrial functions are important in regulating the pool of available heme in cells. Stress generated by oxidative conditions impacts the heme pool, as do the drugs artemisinin and metformin; these drugs have heme-related activities and are in clinical use for malaria and diabetes, respectively. Overall, our study provides insights into mechanisms of fungal heme acquisition and demonstrates the utility of the heme sensor for drug characterization in support of new therapies for fungal diseases.Pathogens must compete with hosts to acquire sufficient iron for proliferation during pathogenesis. The pathogenic fungus Cryptococcus neoformans is capable of acquiring iron from heme, the most abundant source in vertebrate hosts, although the mechanisms of heme sensing and acquisition are not entirely understood. In this study, we adopted a chromosomally encoded heme sensor developed for Saccharomyces cerevisiae to examine cytosolic heme levels in C. neoformans using fluorescence microscopy, fluorimetry, and flow cytometry. We validated the responsiveness of the sensor upon treatment with exogenous hemin, during proliferation in macrophages, and in strains defective for endocytosis. We then used the sensor to show that vacuolar and mitochondrial dysregulation and oxidative stress reduced the labile heme pool in the cytosol. Importantly, the sensor provided a tool to further demonstrate that the drugs artemisinin and metformin have heme-related activities and the potential to be repurposed for antifungal therapy. Overall, this study provides insights into heme sensing by C. neoformans and establishes a powerful tool to further investigate mechanisms of heme-iron acquisition in the context of fungal pathogenesis.
机译:侵入性真菌疾病频率越来越大,需要新的药物靶标和抗真菌药物来吸油治疗。病原体在宿主定植期间从血红素中获得诸如铁的临界营养的机制代表了治疗的有希望的靶标。在这项研究中,我们使用荧光血红素传感器来调查血红素稳态在Cryptococccus Neoformans中。我们证明,内吞作用是血红液孵化的关键方面,并且真空和线粒体功能对于调节细胞中可用血红素的池是重要的。氧化条件产生的应力会影响血红素池,就像药物蒿属和二甲双胍一样;这些药物分别具有血红素相关的活动,分别用于疟疾和糖尿病患者。总体而言,我们的研究提供了对真菌血红素采集机制的洞察力,并证明了血红素传感器用于药物表征的效用,以支持对真菌疾病的新疗法。嗜热必须与宿主进行竞争,以在发病机制期间获得足够的熨斗。致病性真菌密集型新型人能够从血红素中获取铁,脊椎动物中最丰富的源泉,尽管血红系传感和采集的机制并不完全理解。在这项研究中,我们采用了一种用于酿酒酵母的染色体编码的血红素传感器,用于使用荧光显微镜,荧光法和流式细胞术检查C.Neoformans中的细胞溶质血红素水平。在巨噬细胞的增殖期间,在用外源血红素治疗时,我们验证了传感器的响应性,并且在内吞作用的菌株缺陷。然后,我们使用传感器显示真空和线粒体的失调和氧化应激在细胞溶胶中减少了不稳定的血红液池。重要的是,传感器提供了一种工具,进一步证明了药物蒿肉和二甲双胍具有血红素相关的活性,并且可以重新抑制抗真菌治疗的可能性。总体而言,本研究提供了C. Neoformans对血红素感应的见解,并建立了一种强大的工具,以进一步调查在真菌发病机制背景下的血红素射击机制。

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