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RNA triphosphatase is essential in Schizosaccharomyces pombe and Candida albicans

机译:RNA三磷酸酶在粟酒裂殖酵母和白色念珠菌中必不可少

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The first two steps in the capping of cellular mRNAs are catalyzed by the enzymes RNA triphosphatase and RNA guanylyltransferase. Although structural and mechanistic differences between fungal and mammalian RNA triphosphatases recommend this enzyme as a potential antifungal target, it has not been determined if RNA triphosphatase is essential for the growth of fungal species that cause human disease. We show by classical genetic methods that the triphosphatase (Pct1) and guanylyltransferase (Pce1) components of the capping apparatus in the fission yeast Schizosaccharomyces pombe are essential for growth. We were unable to disrupt both alleles of the Candida albicans RNA triphosphatase gene CaCET1, implying that the RNA triphosphatase enzyme is also essential for growth of C. albicans, a human fungal pathogen. Our results provide the first genetic evidence that cap synthesis is essential for growth of an organism other than Saccharomyces cerevisiae and they validate RNA triphosphatase as a target for antifungal drug discovery.
机译:封盖细胞mRNA的前两个步骤由RNA三磷酸酶和RNA胍基转移酶催化。尽管真菌和哺乳动物RNA三磷酸酶之间的结构和机制差异建议将该酶作为潜在的抗真菌靶标,但尚未确定RNA三磷酸酶是否对引起人类疾病的真菌物种的生长至关重要。我们通过经典的遗传方法表明,裂殖酵母裂殖酵母中的加帽装置的三磷酸酶(Pct1)和鸟苷基转移酶(Pce1)成分对生长至关重要。我们无法破坏白色念珠菌RNA三磷酸酶基因CaCET1的两个等位基因,这意味着RNA三磷酸酶对于人真菌病原体白色念珠菌的生长也是必不可少的。我们的结果提供了第一个遗传证据,即帽合成对于酿酒酵母以外的生物的生长至关重要,并且他们证实RNA三磷酸酶是抗真菌药物发现的靶标。

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