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An investigation into euκaryotic pseudouridine synthases

机译:真核假尿苷合酶的研究

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摘要

A common post-transcriptional modification of RNA is the conversion of uridine to its isomer pseudouridine. We investigated the biological significance of eukaryotic pseudouridine synthases using the yeast Saccharomyces cerevisiae. We conducted a comprehensive statistical analysis on growth data from automated perturbation (gene deletion) experiments, and used bi-logistic curve analysis to characterise the yeast phenotypes. The deletant strains displayed different alteration in growth properties, including in some cases enhanced growth and/or biphasic growth curves not seen in wild-type strains under matched conditions. These results demonstrate that disrupting pseudouridine synthases can have a significant qualitative effect on growth. We further investigated the significance of post-transcriptional pseudouridine modification through investigation of the scientific literature. We found that (1) In Toxoplasma gondii, a pseudouridine synthase gene is critical in cellular differentiation between the two asexual forms: Tachyzoites and bradyzoites; (2) Mutation of pseudouridine synthase genes has also been implicated in human diseases (mitochondrial myopathy and sideroblastic anemia (ML ASA); dyskeratosis congenita). Taken together, these results are consistent with pseudouridine synthases having a Gene Ontology function of "biological regulation".
机译:RNA的常见转录后修饰是尿苷向其异构体假尿苷的转化。我们调查了使用酿酒酵母酵母的真核假尿苷合酶的生物学意义。我们对来自自动扰动(基因缺失)实验的生长数据进行了全面的统计分析,并使用双逻辑曲线分析来表征酵母表型。缺失菌株显示出不同的生长特性变化,包括在某些情况下在匹配条件下野生型菌株中未见的增强的生长和/或双相生长曲线。这些结果表明破坏假尿苷合酶可以对生长具有明显的定性作用。我们通过研究科学文献进一步研究了转录后假尿苷修饰的重要性。我们发现(1)在弓形虫中,假尿苷合酶基因在两种无性形式:速殖子和缓殖子之间的细胞分化中至关重要。 (2)假尿苷合酶基因的突变也与人类疾病(线粒体肌病和铁粒幼细胞性贫血(ML ASA);先天性角化不全)有关。综上所述,这些结果与具有“生物调节”的基因本体功能的假尿苷合酶是一致的。

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