The molecular impact of cigarette smoking resembles aging across tissues.

IF 10.4 1区 生物学 Q1 GENETICS & HEREDITY
Jose Miguel Ramirez, Rogério Ribeiro, Oleksandra Soldatkina, Athos Moraes, Raquel García-Pérez, Winona Oliveros, Pedro G Ferreira, Marta Melé
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引用次数: 0

Abstract

Background: Tobacco smoke is the main cause of preventable mortality worldwide. Smoking increases the risk of developing many diseases and has been proposed as an aging accelerator. Yet, the molecular mechanisms driving smoking-related health decline and aging acceleration in most tissues remain unexplored.

Methods: Here, we use data from the Genotype-Tissue Expression Project (GTEx) to perform a characterization of the effect of cigarette smoking across human tissues. We perform a multi-tissue analysis across 46 human tissues. Our multi-omics characterization includes analysis of gene expression, alternative splicing, DNA methylation, and histological alterations. We further analyze ex-smoker samples to assess the reversibility of these molecular alterations upon smoking cessation.

Results: We show that smoking impacts tissue architecture and triggers systemic inflammation. We find that in many tissues, the effects of smoking significantly overlap those of aging. Specifically, both age and smoking upregulate inflammatory genes and drive hypomethylation at enhancers (odds ratio (OR) = 2). In addition, we observe widespread smoking-driven hypermethylation at target regions of the Polycomb repressive complex (OR = 2), which is a well-known aging effect. Smoking-induced epigenetic changes overlap causal aging CpGs, suggesting that these methylation changes may directly mediate the aging acceleration observed in smokers. Finally, we find that smoking effects that are shared with aging are more persistent over time.

Conclusion: Overall, our multi-tissue and multi-omic analysis of the effects of cigarette smoking provides an extensive characterization of the impact of tobacco smoke across tissues and unravels the molecular mechanisms driving smoking-induced tissue homeostasis decline and aging acceleration.

吸烟对分子的影响类似于组织的衰老。
背景:烟草烟雾是全世界可预防死亡的主要原因。吸烟增加了患许多疾病的风险,并被认为是衰老的加速器。然而,在大多数组织中,驱动吸烟相关的健康衰退和衰老加速的分子机制仍未被探索。方法:在这里,我们使用基因型组织表达项目(GTEx)的数据来表征吸烟对人体组织的影响。我们对46个人体组织进行了多组织分析。我们的多组学特征包括基因表达分析,选择性剪接,DNA甲基化和组织学改变。我们进一步分析了前吸烟者样本,以评估戒烟后这些分子改变的可逆性。结果:我们发现吸烟会影响组织结构并引发全身炎症。我们发现,在许多组织中,吸烟的影响明显与衰老的影响重叠。具体来说,年龄和吸烟都会上调炎症基因,并驱动增强子的低甲基化(优势比(OR) = 2)。此外,我们观察到在Polycomb抑制复合体的靶区域广泛存在吸烟驱动的高甲基化(OR = 2),这是一种众所周知的衰老效应。吸烟引起的表观遗传变化与导致衰老的CpGs重叠,表明这些甲基化变化可能直接介导在吸烟者中观察到的衰老加速。最后,我们发现吸烟与衰老的共同影响随着时间的推移更加持久。结论:总的来说,我们对吸烟影响的多组织和多组学分析提供了烟草烟雾对组织影响的广泛特征,并揭示了导致吸烟诱导的组织稳态下降和衰老加速的分子机制。
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来源期刊
Genome Medicine
Genome Medicine GENETICS & HEREDITY-
CiteScore
20.80
自引率
0.80%
发文量
128
审稿时长
6-12 weeks
期刊介绍: Genome Medicine is an open access journal that publishes outstanding research applying genetics, genomics, and multi-omics to understand, diagnose, and treat disease. Bridging basic science and clinical research, it covers areas such as cancer genomics, immuno-oncology, immunogenomics, infectious disease, microbiome, neurogenomics, systems medicine, clinical genomics, gene therapies, precision medicine, and clinical trials. The journal publishes original research, methods, software, and reviews to serve authors and promote broad interest and importance in the field.
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