孟德尔随机化提供了一种多组学的视角来研究与心脏结构和功能相关的核糖体生物发生相关的基因调控。

IF 4.4 2区 医学 Q1 GENETICS & HEREDITY
Shuxu Wei, Ronghuai Shen, Xiaojia Lu, Xinyi Li, Lingbin He, Youti Zhang, Jiahang Yang, Zhouwu Shu, Xianxi Huang
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引用次数: 0

摘要

背景:核糖体生物发生(RiboSis)是一个生成核糖体的复杂过程,核糖体是负责蛋白质合成的细胞机制。不正常的核糖分裂会破坏心脏结构和功能,导致心血管疾病。本研究采用孟德尔随机化(MR)方法,整合多组学数据,研究核糖核酸相关基因与标准心脏结构和功能之间的关系。方法:我们利用甲基化、RNA剪接和基因表达的汇总统计数据,以及UK Biobank cardiopulm MRI遗传关联(N = 41135)。MR根据性状评估了RiboSis基因的特征,并辅以多性状共定位(HyPrColoc)和共定位的假设优先级。综合评分对RiboSis基因进行排序,全现象关联研究(PheWAS)与scQTLbase工具变量(IVs)证实了结果。结果:我们鉴定出15个核糖核酸相关基因:heat1、SENP3、ERI1、ERCC2、TSR1、UTP11、DDX17、SMARCB1、NIP7、ERAL1、NOP56、RPL10A、EIF6、EXOSC9和NOP58。值得注意的是,heat1和SENP3排在前四分之一(Q1),得分为25分。在验证队列中,12个基因与心脏结构、功能、疾病相关。只有ERAL1、TSR1和NIP7与心脏特征缺乏显著相关性。结论:我们的多组学MR分析鉴定了15个与心脏风险相关的核糖核酸相关基因,其中12个通过基因集富集分析进一步验证。这些发现提示了核糖体分裂与心脏健康之间的联系,增强了对心脏病机制的理解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mendelian randomization provides a multi-omics perspective on the regulation of genes involved in ribosome biogenesis in relation to cardiac structure and function.

Background: Ribosome biogenesis (RiboSis) is a complex process for generating ribosomes, the cellular machinery responsible for protein synthesis. Dysfunctional RiboSis can disrupt cardiac structure and function, contributing to cardiovascular diseases. This study employed a Mendelian randomization (MR) approach, integrating multi-omics data, to investigate the relationship between RiboSis-related genes and standard cardiac structure and function.

Methods: We utilized summary stats for methylation, RNA splicing, and gene expression, and UK Biobank cardiopulm MRI genetic associations (N = 41,135). MR evaluated RiboSis gene features against traits, complemented by hypothesis prioritization for multi-trait colocalization (HyPrColoc) and colocalization. Composite scores ranked RiboSis genes, and phenome-wide association study (PheWAS) with scQTLbase instrumental variables (IVs) confirmed results.

Results: We identified 15 RiboSis-related genes: HEATR1, SENP3, ERI1, ERCC2, TSR1, UTP11, DDX17, SMARCB1, NIP7, ERAL1, NOP56, RPL10A, EIF6, EXOSC9, and NOP58. Notably, HEATR1 and SENP3 were ranked in the top quartile (Q1), scoring 25. In validation cohort, 12 genes associated with cardiac structures, functions, diseases. Only ERAL1, TSR1, and NIP7 lacked significant associations with cardiac traits.

Conclusion: Our multi-omics MR analysis identified 15 RiboSis-related genes associated with cardiac risk, with 12 further validated through gene set enrichment analysis. These findings suggest a link between RiboSis and cardiac health, enhancing understanding of cardiac disease mechanisms.

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来源期刊
自引率
5.30%
发文量
150
期刊介绍: Clinical Epigenetics, the official journal of the Clinical Epigenetics Society, is an open access, peer-reviewed journal that encompasses all aspects of epigenetic principles and mechanisms in relation to human disease, diagnosis and therapy. Clinical trials and research in disease model organisms are particularly welcome.
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