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首页> 外文期刊>Fungal Genetics and Biology >Two cation transporters Ena1 and Nha1 cooperatively modulate ionTI Two cation transporters Ena1 and Nha1 cooperatively modulate ion homeostasis, antifungal drug resistance, and virulence of Cryptococcus neoformans via the HOG pathway
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Two cation transporters Ena1 and Nha1 cooperatively modulate ionTI Two cation transporters Ena1 and Nha1 cooperatively modulate ion homeostasis, antifungal drug resistance, and virulence of Cryptococcus neoformans via the HOG pathway

机译:两个阳离子转运蛋白Ena1和Nha1协同调节ionTI两个阳离子转运蛋白Ena1和Nha1通过HOG途径协同调节离子稳态,抗真菌药物耐药性以及新隐球菌的毒力

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摘要

Maintenance of cation homeostasis is essential for survival of all living organisms in their biological niches. It is also important for the survival of human pathogenic fungi in the host, where cation concentrations and pH will vary depending on different anatomical sites. However, the exact role of diverse cation transporters and ion channels in virulence of fungal pathogens remains elusive. In this study we functionally characterized ENA1 and NHA1, encoding a putative Na+/ATPase and Na+/H+ antiporter, respectively, in Cryptococcus neoformans, a basidiomycete fungal pathogen which causes fatal meningoencephalitis. Expression of NHA1 and ENA1 is induced in response to salt and osmotic shock mainly in a Hog1-dependent manner. Phenotypic analysis of the ena1 Delta, nha1 Delta, and ena1 Delta nha1 Delta mutants revealed that Enal controls cellular levels of toxic cations, such as Na+ and Li+ whereas both Ena1 and Nha1 are important for controlling less toxic K+ ions. Under alkaline conditions, Ena1 was highly induced and required for growth in the presence of low levels of Na+ or K+ salt and Nha1 played a role in survival under K+ stress. In contrast, Nha1, but not Ena1, was essential for survival at acidic conditions (pH 4.5) under high K+ stress. In addition, Enal and Nha1 were required for maintenance of plasma membrane potential and stability, which appeared to modulate antifungal drug susceptibility. Perturbation of ENA1 and NHA1 enhanced capsule production and melanin synthesis. However, Nha1 was dispensable for virulence of C. neoformans although Enal was essential. In conclusion, Enal and Nha1 play redundant and discrete roles in cation homeostasis, pH regulation, membrane potential, and virulence in C. neoformans, suggesting that these transporters could be novel antifungal drug targets for treatment of cryptococcosis
机译:维持阳离子稳态对于所有活生物体在其生物生态位中的生存至关重要。这对于宿主中人类病原性真菌的生存也很重要,因为阳离子的浓度和pH值会根据不同的解剖部位而变化。但是,各种阳离子转运蛋白和离子通道在真菌病原体毒力中的确切作用仍然难以捉摸。在这项研究中,我们在功能上表征了ENA1和NHA1,它们分别在导致隐性脑膜脑炎的担子菌真菌病原体新隐球菌中编码一个假定的Na + / ATPase和Na + / H +反转运蛋白。响应于盐和渗透性休克,主要以Hog1依赖性方式诱导NHA1和ENA1的表达。对ena1 Delta,nha1 Delta和ena1 Delta nha1 Delta突变体的表型分析显示,Enal控制细胞中有毒阳离子的水平,例如Na +和Li +,而Ena1和Nha1都对控制毒性较小的K +离子很重要。在碱性条件下,在低水平的Na +或K +盐存在下,Ena1被高度诱导并生长所需,而Nha1在K +胁迫下的存活中起着重要作用。相反,Nha1,而不是Ena1,对于在高K +胁迫下在酸性条件(pH 4.5)下的生存至关重要。此外,需要Enal和Nha1来维持质膜电位和稳定性,这似乎可以调节抗真菌药的敏感性。 ENA1和NHA1的摄动增强了胶囊的产生和黑色素的合成。但是,尽管Enal是必不可少的,但Nha1对于新孢梭菌的毒性却是不可缺少的。总之,Enal和Nha1在阳离子动态平衡,pH调节,膜电位和新孢梭菌的毒力中起着冗余和离散的作用,表明这些转运蛋白可能是治疗隐球菌病的新型抗真菌药物

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