miRNAome-metabolome wide association study reveals effects of miRNA regulation in eosinophilia and airflow obstruction in childhood asthma.

IF 9.7 1区 医学 Q1 MEDICINE, RESEARCH & EXPERIMENTAL EBioMedicine Pub Date : 2025-02-01 Epub Date: 2024-12-30 DOI:10.1016/j.ebiom.2024.105534
Rinku Sharma, Kevin Mendez, Sofina Begum, Su Chu, Nicole Prince, Julian Hecker, Rachel S Kelly, Qingwen Chen, Craig E Wheelock, Juan C Celedón, Clary Clish, Robert Gertszen, Kelan G Tantisira, Scott T Weiss, Jessica Lasky-Su, Michael McGeachie
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Abstract

Background: There are important inter-relationships between miRNAs and metabolites: alterations in miRNA expression can be induced by various metabolic stimuli, and miRNAs play a regulatory role in numerous cellular processes, impacting metabolism. While both specific miRNAs and metabolites have been identified for their role in childhood asthma, there has been no global assessment of the combined effect of miRNAs and the metabolome in childhood asthma.

Methods: We performed miRNAome-metabolome-wide association studies ('miR-metabo-WAS') in two childhood cohorts of asthma to evaluate the contemporaneous and persistent miRNA-metabolite associations: 1) Genetic Epidemiology of Asthma in Costa Rica Study (GACRS) (N = 1121); 2) the Childhood Asthma Management Program (CAMP) (NBaseline = 312 and NEnd of trial = 454). We conducted a meta-analysis of the two cohorts to identify common contemporaneous associations between CAMP and GACRS (false-discovery rate (FDR) = 0.05). We assessed persistent miRNA-metabolome associations using baseline miRNAs and metabolomic profiling in CAMP at the end of the trial. The relation between miRNAs, metabolites and clinical phenotypes, including airway hyper-responsiveness (AHR), peripheral blood eosinophilia, and airflow obstruction, were then assessed via. Mediation analysis with 1000 bootstraps at an FDR significance level of 0.05.

Findings: The meta-analysis yielded a total of 369 significant contemporaneous associations, involving 133 miRNAs and 60 metabolites. We identified 13 central hub metabolites (taurine, 12,13-diHOME, sebacate, 9-cis-retinoic acid, azelate, asparagine, C5:1 carnitine, cortisol, 3-methyladipate, inosine, NMMA, glycine, and Pyroglutamic acid) and four hub miRNAs (hsa-miR-186-5p, hsa-miR-143-3p, hsa-miR-192-5p, and hsa-miR-223-3p). Nine of these associations, between eight miRNAs and eight metabolites, were persistent in CAMP from baseline to the end of trial. Finally, five central hub metabolites (9-cis-retinoic acid, taurine, sebacate, azelate, and 12,13-diHOME) were identified as primary mediators in over 100 significant indirect miRNA-metabolite associations, with a collective influence on peripheral blood eosinophilia, AHR, and airflow obstruction.

Interpretation: The robust association between miRNAs and metabolites, along with the substantial indirect impact of miRNAs via 5 hub metabolites on multiple clinical asthma metrics, suggests important integrated effects of miRNAs and metabolites on asthma. These findings imply that the indirect regulation of metabolism and cellular functions by miRNA influences Th2 inflammation, AHR, and airflow obstruction in childhood asthma.

Funding: Molecular data for CAMP and GACRS via the Trans-Omics in Precision Medicine (TOPMed) program was supported by the National Heart, Lung, and Blood Institute (NHLBI).

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mirnaome -代谢组广泛关联研究揭示miRNA调控在儿童哮喘嗜酸性粒细胞增多和气流阻塞中的作用。
背景:miRNA与代谢物之间存在重要的相互关系:各种代谢刺激可诱导miRNA表达的改变,miRNA在许多细胞过程中发挥调节作用,影响代谢。虽然已经确定了特定的mirna和代谢物在儿童哮喘中的作用,但尚未对mirna和代谢物在儿童哮喘中的联合作用进行全面评估。方法:我们在两个哮喘儿童队列中进行了mirnaome -代谢组全关联研究(mir - metabolic - was),以评估同时发生和持续存在的mirna -代谢物关联:1)哥斯达黎加哮喘遗传流行病学研究(GACRS) (N = 1121);2)儿童哮喘管理项目(CAMP) (NBaseline = 312, NEnd of trial = 454)。我们对两个队列进行了荟萃分析,以确定CAMP和GACRS之间的共同同期关联(错误发现率(FDR) = 0.05)。在试验结束时,我们使用基线mirna和CAMP的代谢组学分析来评估持久的mirna -代谢组关联。mirna、代谢物与临床表型之间的关系,包括气道高反应性(AHR)、外周血嗜酸性粒细胞和气流阻塞。在FDR显著性水平为0.05的1000个自举的中介分析。结果:荟萃分析共产生了369个显著的同期关联,涉及133个mirna和60个代谢物。我们鉴定了13种中枢代谢产物(牛磺酸、12,13- dihome、癸二酸、9-顺式维甲酸、壬二酸、天冬酰胺、C5:1肉碱、皮质醇、3-甲基二酸、肌苷、NMMA、甘氨酸和焦谷氨酸)和4种中枢mirna (hsa-miR-186-5p、hsa-miR-143-3p、hsa-miR-192-5p和hsa-miR-223-3p)。8种mirna和8种代谢物之间的9种关联在CAMP中从基线到试验结束持续存在。最后,五种中心枢纽代谢物(9-顺式维甲酸、牛磺酸、癸二酸、壬二酸和12,13- dihome)被确定为100多种显著的间接mirna代谢物关联的主要介质,共同影响外周血嗜酸性粒细胞、AHR和气流阻塞。解释:miRNAs和代谢物之间的强大关联,以及miRNAs通过5种中枢代谢物对多种临床哮喘指标的实质性间接影响,表明miRNAs和代谢物对哮喘有重要的综合作用。这些发现提示miRNA间接调节代谢和细胞功能影响儿童哮喘Th2炎症、AHR和气流阻塞。资助:通过精准医学反式组学(TOPMed)项目获得的CAMP和GACRS分子数据由国家心脏、肺和血液研究所(NHLBI)支持。
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来源期刊
EBioMedicine
EBioMedicine Biochemistry, Genetics and Molecular Biology-General Biochemistry,Genetics and Molecular Biology
CiteScore
17.70
自引率
0.90%
发文量
579
审稿时长
5 weeks
期刊介绍: eBioMedicine is a comprehensive biomedical research journal that covers a wide range of studies that are relevant to human health. Our focus is on original research that explores the fundamental factors influencing human health and disease, including the discovery of new therapeutic targets and treatments, the identification of biomarkers and diagnostic tools, and the investigation and modification of disease pathways and mechanisms. We welcome studies from any biomedical discipline that contribute to our understanding of disease and aim to improve human health.
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