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整合蛋白质基因组学研究DM1小鼠模型中的差异表达和剪接变异

Integrative Proteogenomics for Differential Expression and Splicing Variation in a DM1 Mouse Model.

作者信息

Solovyeva Elizaveta M, Utzinger Stephan, Vissières Alexandra, Mitchelmore Joanna, Ahrné Erik, Hermes Erwin, Poetsch Tania, Ronco Marie, Bidinosti Michael, Merkl Claudia, Serluca Fabrizio C, Fessenden James, Naumann Ulrike, Voshol Hans, Meyer Angelika S, Hoersch Sebastian

机构信息

Research Informatics, Biomedical Research at Novartis, Basel, Switzerland; V.L. Talrose Institute for Energy Problems of Chemical Physics, N.N. Semenov Federal Research Center for Chemical Physics, Russian Academy of Sciences, Moscow, Russia.

Diseases of Aging and Regenerative Medicine, Biomedical Research at Novartis, Basel, Switzerland.

出版信息

Mol Cell Proteomics. 2024 Jan;23(1):100683. doi: 10.1016/j.mcpro.2023.100683. Epub 2023 Nov 21.

Abstract

Dysregulated mRNA splicing is involved in the pathogenesis of many diseases including cancer, neurodegenerative diseases, and muscular dystrophies such as myotonic dystrophy type 1 (DM1). Comprehensive assessment of dysregulated splicing on the transcriptome and proteome level has been methodologically challenging, and thus investigations have often been targeting only few genes. Here, we performed a large-scale coordinated transcriptomic and proteomic analysis to characterize a DM1 mouse model (HSA) in comparison to wild type. Our integrative proteogenomics approach comprised gene- and splicing-level assessments for mRNAs and proteins. It recapitulated many known instances of aberrant mRNA splicing in DM1 and identified new ones. It enabled the design and targeting of splicing-specific peptides and confirmed the translation of known instances of aberrantly spliced disease-related genes (e.g., Atp2a1, Bin1, Ryr1), complemented by novel findings (Flnc and Ywhae). Comparative analysis of large-scale mRNA and protein expression data showed quantitative agreement of differentially expressed genes and splicing patterns between disease and wild type. We hence propose this work as a suitable blueprint for a robust and scalable integrative proteogenomic strategy geared toward advancing our understanding of splicing-based disorders. With such a strategy, splicing-based biomarker candidates emerge as an attractive and accessible option, as they can be efficiently asserted on the mRNA and protein level in coordinated fashion.

摘要

失调的mRNA剪接参与了包括癌症、神经退行性疾病和诸如1型强直性肌营养不良(DM1)等肌肉萎缩症在内的多种疾病的发病机制。在转录组和蛋白质组水平上对失调剪接进行全面评估在方法上具有挑战性,因此研究往往只针对少数基因。在这里,我们进行了大规模的协调转录组学和蛋白质组学分析,以表征与野生型相比的DM1小鼠模型(HSA)。我们的综合蛋白质基因组学方法包括对mRNA和蛋白质的基因水平和剪接水平评估。它概括了DM1中许多已知的异常mRNA剪接实例,并发现了新的实例。它能够设计和靶向剪接特异性肽,并证实了已知的异常剪接疾病相关基因(如Atp2a1、Bin1、Ryr1)的翻译,同时还有新的发现(Flnc和Ywhae)作为补充。对大规模mRNA和蛋白质表达数据的比较分析显示,疾病组和野生型之间差异表达基因和剪接模式在数量上具有一致性。因此,我们建议将这项工作作为一个合适的蓝图,用于一种强大且可扩展的综合蛋白质基因组学策略,以推进我们对基于剪接的疾病的理解。通过这样一种策略,基于剪接的生物标志物候选物成为一种有吸引力且易于获取的选择

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c01a/10770608/897ccccba787/ga1.jpg

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