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Rapid Profiling of Disease Alleles Using a Tunable Reporter of Protein Misfolding

机译:使用蛋白质错误折叠的可调报告基因快速分析疾病等位基因

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摘要

Many human diseases are caused by genetic mutations that decrease protein stability. Such mutations may not specifically affect an active site, but can alter protein folding, abundance, or localization. Here we describe a high-throughput cell-based stability assay, IDESA (intra-DHFR enzyme stability assay), where stability is coupled to cell proliferation in the model yeast, Saccharomyces cerevisiae. The assay requires no prior knowledge of a protein’s structure or activity, allowing the assessment of stability of proteins that have unknown or difficult to characterize activities, and we demonstrate use with a range of disease-relevant targets, including human alanine:glyoxylate aminotransferase (AGT), superoxide dismutase (SOD-1), DJ-1, p53, and SMN1. The assay can be carried out on hundreds of disease alleles in parallel or used to identify stabilizing small molecules (pharmacological chaperones) for unstable alleles. As demonstration of the general utility of this assay, we analyze stability of disease alleles of AGT, deficiency of which results in the kidney stone disease, primary hyperoxaluria type I, identifying mutations that specifically affect the protein-active site chemistry.
机译:许多人类疾病是由降低蛋白质稳定性的基因突变引起的。此类突变可能不会特异性影响活性位点,但会改变蛋白质折叠,丰度或定位。在这里,我们描述了一种基于细胞的高通量稳定性测定法,即IDESA(DHFR内酶稳定性测定法),其中稳定性与模型酵母酿酒酵母中的细胞增殖耦合。该测定无需事先了解蛋白质的结构或活性,可以评估未知或难以表征活性的蛋白质的稳定性,并且我们证明可与多种疾病相关靶标一起使用,包括人丙氨酸:乙醛酸转氨酶(AGT) ),超氧化物歧化酶(SOD-1),DJ-1,p53和SMN1。该测定法可在数百个疾病等位基因上并行进行,或用于鉴定不稳定等位基因的稳定小分子(药理伴侣)。作为该测定法一般用途的证明,我们分析了AGT疾病等位基因的稳定性,其缺乏会导致肾结石病,I型原发性高草酸尿症,从而确定特异性影响蛋白质活性位点化学的突变。

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