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Functional characterization and virulence study of ADE8 and GUA1 genes involved in the de novo purine biosynthesis in Candida albicans

机译:ADE8和GUA1基因参与白色念珠菌从头嘌呤生物合成的功能表征和毒力研究

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Candida albicans is the principal human fungal pathogen that leads to life-threatening mycoses worldwide. To study its pathobiology, we characterized genes for two enzymes involved in the de novo purine biosynthesis pathway: ADE8 (encoding phosphoribosylglycinamide formyl-transferase) and GUA1 (GMP synthase). Heterozygous and homozygous disruption strains were constructed for both genes. We found that ADE8 and GUA1 are conditionally essential; i.e. can be bypassed in the presence of exogenous adenine and guanine, respectively, and that ADE8 plays an additional role in the C1-folate pool. Furthermore, the heterozygotes of ADE8/ade8 and GUA1/gua1 were hypersensitive to methotrexate (an inhibitor of de novo synthesis of tetrahydrofolate) and 6-azauracil (a known inhibitor of the IMP dehydrogenase involved in GMP biosynthesis), respectively. In a murine model of systemic candidiasis, the virulence of both heterozygous strains was marginally attenuated, while the ade8/ade8 and gua1/gua1 strains were completely avirulent. Our results and those of others indicate that many conditional essential genes involved in different biosynthesis pathways are required for systemic candidiasis, likely due to the host nutritional constraints imposed on the pathogen.
机译:白色念珠菌是导致人类生命危险的真菌病的主要人类真菌病原体。为了研究其病理生物学特性,我们表征了参与从头嘌呤生物合成途径的两种酶的基因:ADE8(编码磷酸核糖甘氨酰胺甲酰转移酶)和GUA1(GMP合酶)。构建了两个基因的杂合和纯合破坏菌株。我们发现ADE8和GUA1是有条件的。即可以分别在外源性腺嘌呤和鸟嘌呤的存在下绕过,而ADE8在C1-叶酸池中起着另外的作用。此外,ADE8 / ade8和GUA1 / gua1的杂合子分别对甲氨蝶呤(一种四氢叶酸从头合成抑制剂)和6-氮杂尿嘧啶(一种已知的参与GMP生物合成的IMP脱氢酶抑制剂)过敏。在系统性念珠菌病的小鼠模型中,两个杂合菌株的毒力都略有减弱,而ade8 / ade8和gua1 / gua1菌株则完全无毒。我们的结果和其他结果表明,全身念珠菌病需要许多参与不同生物合成途径的条件必需基因,这可能是由于宿主对病原体的营养限制所致。

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