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多组学整合为多发性硬化症确定了潜在的药物靶点优先级。

Multiomics integration prioritizes potential drug targets for multiple sclerosis.

作者信息

Jiang Yuan, Liu Qianwen, Stridh Pernilla, Kockum Ingrid, Olsson Tomas, Alfredsson Lars, Diaz-Gallo Lina-Marcela, Jiang Xia

机构信息

Department of Clinical Neuroscience, The Karolinska Neuroimmunology & Multiple Sclerosis Centre, Centre for Molecular Medicine, Karolinska Institutet, Stockholm 17177, Sweden.

Institute of Environmental Medicine, Karolinska Institutet, Stockholm 17177, Sweden.

出版信息

Proc Natl Acad Sci U S A. 2025 Jul;122(26):e2425537122. doi: 10.1073/pnas.2425537122. Epub 2025 Jun 27.

Abstract

Multiple sclerosis (MS) is an immune-mediated disease with no current cure. Drug discovery and repurposing are essential to enhance treatment efficacy and safety. We utilized summary statistics for protein quantitative trait loci (pQTL) of 2,004 plasma and 1,443 brain proteins, a genome-wide association study of MS susceptibility with 14,802 cases and 26,703 controls, both bulk and cell-type specific transcriptome data, and external pQTL data in blood and brain. Our integrative analysis included a proteome-wide association study to identify MS-associated proteins, followed by summary-data-based Mendelian randomization to determine potential causal associations. We used the HEIDI test and Bayesian colocalization analysis to distinguish pleiotropy from linkage. Proteins passing all analyses were prioritized as potential drug targets. We further conducted pathway annotations and protein-protein interaction network analysis (PPI) and verified our findings at mRNA and protein levels. We tested hundreds of MS-associated proteins and confirmed 18 potential causal proteins (nine in plasma and nine in brain). Among these, we found 78 annotated pathways and 16 existing non-MS drugs targeting six proteins. We also identified intricateAQ PPIs among seven potential drug targets and 19 existing MS drug targets, as well as PPIs of four targets across plasma and brain. We identified two targets using bulk mRNA expression data and four targets expressed in MS-related cell types. We finally verified 10 targets using external pQTL data. We prioritized 18 potential drug targets in plasma and brain, elucidating the underlying pathology and providing evidence for potential drug discovery and repurposing in MS.

摘要

多发性硬化症(MS)是一种目前无法治愈的免疫介导疾病。药物研发和药物再利用对于提高治疗效果和安全性至关重要。我们利用了2004种血浆蛋白和1443种脑蛋白的蛋白质定量性状位点(pQTL)的汇总统计数据、一项针对14802例病例和26703例对照的MS易感性全基因组关联研究、批量和细胞类型特异性转录组数据以及血液和大脑中的外部pQTL数据。我们的综合分析包括一项全蛋白质组关联研究以识别与MS相关的蛋白质,随后进行基于汇总数据的孟德尔随机化分析以确定潜在的因果关联。我们使用HEIDI检验和贝叶斯共定位分析来区分多效性和连锁关系。通过所有分析的蛋白质被优先列为潜在的药物靶点。我们进一步进行了通路注释和蛋白质-蛋白质相互作用网络分析(PPI),并在mRNA和蛋白质水平验证了我们的发现。我们测试了数百种与MS相关的蛋白质,并确认了18种潜在的因果蛋白质(9种在血浆中,9种在大脑中)。其中,我们发现了78条注释通路和16种针对6种蛋白质的现有非MS药物。我们还在7个潜在药物靶点和19个现有MS药物靶点之间识别出复杂的PPI,以及4个跨血浆和大脑的靶点的PPI。我们使用批量mRNA表达数据识别出2个靶点,在与MS相关的细胞类型中表达的4个靶点。我们最终使用外部pQTL数据验证了10个靶点。我们确定了血浆和大脑中的18个潜在药物靶点,阐明了潜在的病理机制,并为MS的潜在药物研发和药物再利用提供了证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/119f/12232717/316e643e5757/pnas.2425537122fig01.jpg

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