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Widespread Macromolecular Interaction Perturbations in Human Genetic Disorders

机译:人类遗传疾病中广泛的大分子相互作用扰动

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How disease-associated mutations impair protein activities in the context of biological networks remains mostly undetermined. Although a few renowned alleles are well characterized, functional information is missing for over 100,000 disease-associated variants. Here we functionally profile several thousand missense mutations across a spectrum of Mendelian disorders using various interaction assays. The majority of disease-associated alleles exhibit wild-type chaperone binding profiles, suggesting they preserve protein folding or stability. While common variants from healthy individuals rarely affect interactions, two-thirds of disease-associated alleles perturb protein-protein interactions, with half corresponding to "edgetic" alleles affecting only a subset of interactions while leaving most other interactions unperturbed. With transcription factors, many alleles that leave protein-protein interactions intact affect DNA binding. Different mutations in the same gene leading to different interaction profiles often result in distinct disease phenotypes. Thus disease-associated alleles that perturb distinct protein activities rather than grossly affecting folding and stability are relatively widespread.
机译:在生物网络的背景下,与疾病相关的突变如何影响蛋白质活性仍未确定。尽管一些著名的等位基因已得到很好的表征,但缺少超过100,000种与疾病相关的变体的功能信息。在这里,我们使用各种相互作用分析功能分析了整个孟德尔疾病谱中的数千个错义突变。大多数与疾病相关的等位基因表现出野生型伴侣结合特征,表明它们保留了蛋白质折叠或稳定性。尽管来自健康个体的常见变异很少影响相互作用,但与疾病相关的等位基因的三分之二扰乱了蛋白质-蛋白质相互作用,其中一半对应于“边缘”等位基因,仅影响相互作用的一部分,而使大多数其他相互作用不受干扰。利用转录因子,许多使蛋白质与蛋白质相互作用保持完整的等位基因会影响DNA结合。同一基因中的不同突变导致不同的相互作用谱,通常会导致不同的疾病表型。因此,扰乱独特蛋白质活性而不严重影响折叠和稳定性的疾病相关等位基因相对广泛。

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