全球蛋白质组分析揭示了心病性 Lamin A/C 基因突变之间不同表达蛋白质的变化

IF 3.8 2区 生物学 Q1 BIOCHEMICAL RESEARCH METHODS Journal of Proteome Research Pub Date : 2024-05-08 DOI:10.1021/acs.jproteome.3c00853
Corey L. Anderson*, Kyle A. Brown, Ryan J. North, Janay K. Walters, Sara T. Kaska, Mathew R. Wolff, Timothy J. Kamp, Ying Ge and Lee L. Eckhardt*, 
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摘要

层粘连蛋白 A/C(LMNA)是核薄层的重要组成部分。突变可导致心律失常、心力衰竭和心脏性猝死。虽然 LMNA 相关性心肌病的病程通常较长,对常规心衰疗法的反应较差,但在特定基因突变之间甚至在特定基因突变内部,其严重程度和穿透年龄都存在差异,这在细胞水平上还鲜为人知。此外,这种异质性以前从未被捕获以模拟杂合子状态,也没有数百种临床 LMNA 突变的代表。在这里,我们在 HEK 细胞中过表达了心病 LMNA 变异,并利用最先进的定量蛋白质组学技术比较了(1)单独聚集的 Q353 K、(2)与 WT 共表达的 Q353 K、(3)与 WT 共表达的聚集 N195 K 和(4)与 WT 共表达的非聚集 E317 K 的全局蛋白质组图谱,以帮助捕捉突变之间的一些异质性。我们分析了每个数据集,以获得差异表达蛋白(DEPs),并应用了基因本体(GO)和 KEGG 通路分析。我们从 6000 多个总蛋白 ID 中发现了 162 至 324 个差异表达蛋白,它们在 GO 术语、KEGG 通路和对心脏功能有重要影响的差异表达蛋白方面存在差异,这进一步凸显了心脏板层病变的复杂性。针对 LMNA N195 K,在 HEK 293 细胞和诱导多能干细胞衍生心肌细胞(iPSC-CMs)中用氧化还原、自噬和凋亡功能测试验证了被 LMNA 突变破坏的通路。
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Global Proteomic Analysis Reveals Alterations in Differentially Expressed Proteins between Cardiopathic Lamin A/C Mutations

Lamin A/C (LMNA) is an important component of nuclear lamina. Mutations cause arrhythmia, heart failure, and sudden cardiac death. While LMNA-associated cardiomyopathy typically has an aggressive course that responds poorly to conventional heart failure therapies, there is variability in severity and age of penetrance between and even within specific mutations, which is poorly understood at the cellular level. Further, this heterogeneity has not previously been captured to mimic the heterozygous state, nor have the hundreds of clinical LMNA mutations been represented. Herein, we have overexpressed cardiopathic LMNA variants in HEK cells and utilized state-of-the-art quantitative proteomics to compare the global proteomic profiles of (1) aggregating Q353 K alone, (2) Q353 K coexpressed with WT, (3) aggregating N195 K coexpressed with WT, and (4) nonaggregating E317 K coexpressed with WT to help capture some of the heterogeneity between mutations. We analyzed each data set to obtain the differentially expressed proteins (DEPs) and applied gene ontology (GO) and KEGG pathway analyses. We found a range of 162 to 324 DEPs from over 6000 total protein IDs with differences in GO terms, KEGG pathways, and DEPs important in cardiac function, further highlighting the complexity of cardiac laminopathies. Pathways disrupted by LMNA mutations were validated with redox, autophagy, and apoptosis functional assays in both HEK 293 cells and in induced pluripotent stem cell derived cardiomyocytes (iPSC-CMs) for LMNA N195 K. These proteomic profiles expand our repertoire for mutation-specific downstream cellular effects that may become useful as druggable targets for personalized medicine approach for cardiac laminopathies.

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来源期刊
Journal of Proteome Research
Journal of Proteome Research 生物-生化研究方法
CiteScore
9.00
自引率
4.50%
发文量
251
审稿时长
3 months
期刊介绍: Journal of Proteome Research publishes content encompassing all aspects of global protein analysis and function, including the dynamic aspects of genomics, spatio-temporal proteomics, metabonomics and metabolomics, clinical and agricultural proteomics, as well as advances in methodology including bioinformatics. The theme and emphasis is on a multidisciplinary approach to the life sciences through the synergy between the different types of "omics".
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