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Involvement of an Alternative Oxidase in Oxidative Stress and Mycelium-to-Yeast Differentiation in Paracoccidioides brasiliensis

机译:替代氧化酶参与巴西副球菌的氧化应激和菌丝体-酵母分化

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Paracoccidioides brasiliensis is a thermodimorphic human pathogenic fungus that causes paracoccidioidomycosis (PCM), which is the most prevalent systemic mycosis in Latin America. Differentiation from the mycelial to the yeast form (M-to-Y) is an essential step for the establishment of PCM. We evaluated the involvement of mitochondria and intracellular oxidative stress in M-to-Y differentiation. M-to-Y transition was delayed by the inhibition of mitochondrial complexes III and IV or alternative oxidase (AOX) and was blocked by the association of AOX with complex III or IV inhibitors. The expression of P. brasiliensis aox (Pbaox) was developmentally regulated through M-to-Y differentiation, wherein the highest levels were achieved in the first 24 h and during the yeast exponential growth phase; Pbaox was upregulated by oxidative stress. Pbaox was cloned, and its heterologous expression conferred cyanide-resistant respiration in Saccharomyces cerevisiae and Escherichia coli and reduced oxidative stress in S. cerevisiae cells. These results reinforce the role of PbAOX in intracellular redox balancing and demonstrate its involvement, as well as that of other components of the mitochondrial respiratory chain complexes, in the early stages of the M-to-Y differentiation of P. brasiliensis.
机译:巴西副球菌是一种热二态性人类致病性真菌,可引起副球菌病(PCM),这是拉丁美洲最普遍的全身性真菌病。从菌丝体到酵母形式的分化(M-Y)是建立PCM的重要步骤。我们评估了线粒体和细胞内氧化应激在M到Y分化中的参与。由线粒体复合物III和IV或替代氧化酶(AOX)的抑制,M到Y的转变被延迟,并且被AOX与复合物III或IV抑制剂的结合所阻止。通过M-Y分化来发育调控巴西毕赤酵母 aox Pbaox )的表达,其中最高水平在酵母的前24小时和酵母过程中达到指数生长期;氧化应激上调了 Pbaox 。克隆了 Pbaox ,其异源表达赋予了酿酒酵母和大肠杆菌抗氰化物的呼吸作用,并降低了酿酒酵母细胞的氧化应激。这些结果加强了 Pb AOX在细胞内氧化还原平衡中的作用,并证明了其在M到Y分化的早期阶段以及线粒体呼吸链复合物中其他成分的参与。巴西利亚。

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