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一种用于遗传性和体细胞疾病个体化医学的蛋白质组学变异方法(ProVarA)。

A Proteomic Variant Approach (ProVarA) for Personalized Medicine of Inherited and Somatic Disease.

机构信息

The Scripps Research Institute, Department of Molecular Medicine, 10550 North Torrey Pines Rd, La Jolla, CA 92037, USA.

Sanford Burnham Prebys Medical Discovery Institute Proteomic Core, 10901 North Torrey Pines Road, La Jolla, CA 92037, USA.

出版信息

J Mol Biol. 2018 Sep 14;430(18 Pt A):2951-2973. doi: 10.1016/j.jmb.2018.06.017. Epub 2018 Jun 18.

Abstract

The advent of precision medicine for genetic diseases has been hampered by the large number of variants that cause familial and somatic disease, a complexity that is further confounded by the impact of genetic modifiers. To begin to understand differences in onset, progression and therapeutic response that exist among disease-causing variants, we present the proteomic variant approach (ProVarA), a proteomic method that integrates mass spectrometry with genomic tools to dissect the etiology of disease. To illustrate its value, we examined the impact of variation in cystic fibrosis (CF), where 2025 disease-associated mutations in the CF transmembrane conductance regulator (CFTR) gene have been annotated and where individual genotypes exhibit phenotypic heterogeneity and response to therapeutic intervention. A comparative analysis of variant-specific proteomics allows us to identify a number of protein interactions contributing to the basic defects associated with F508del- and G551D-CFTR, two of the most common disease-associated variants in the patient population. We demonstrate that a number of these causal interactions are significantly altered in response to treatment with Vx809 and Vx770, small-molecule therapeutics that respectively target the F508del and G551D variants. ProVarA represents the first comparative proteomic analysis among multiple disease-causing mutations, thereby providing a methodological approach that provides a significant advancement to existing proteomic efforts in understanding the impact of variation in CF disease. We posit that the implementation of ProVarA for any familial or somatic mutation will provide a substantial increase in the knowledge base needed to implement a precision medicine-based approach for clinical management of disease.

摘要

精准医学在遗传性疾病中的应用受到了大量致病突变的阻碍,这些突变具有家族性和体细胞性,其复杂性进一步受到遗传修饰因子的影响而变得更加复杂。为了开始理解导致疾病的变异体在发病、进展和治疗反应方面存在的差异,我们提出了蛋白质组变异体分析方法(ProVarA),这是一种将质谱与基因组工具相结合来剖析疾病病因的蛋白质组学方法。为了说明其价值,我们研究了囊性纤维化(CF)中的变异情况,在 CF 跨膜电导调节因子(CFTR)基因中已经注释了 2025 种与疾病相关的突变,个体基因型表现出表型异质性和对治疗干预的反应。对变异特异性蛋白质组学的比较分析使我们能够鉴定出许多与 F508del 和 G551D-CFTR 相关的基本缺陷有关的蛋白质相互作用,这两种突变是患者群体中最常见的两种与疾病相关的突变。我们证明,在对 Vx809 和 Vx770 进行治疗时,许多这些因果相互作用会发生显著改变,这两种小分子治疗剂分别针对 F508del 和 G551D 突变。ProVarA 代表了多个致病突变之间的首次比较蛋白质组学分析,从而提供了一种方法学方法,为理解 CF 疾病变异的影响提供了现有蛋白质组学研究的重要进展。我们假设,对于任何家族性或体细胞突变,实施 ProVarA 将大大增加实施基于精准医学的疾病临床管理方法所需的知识库。

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