The diabetic myocardial transcriptome reveals Erbb3 and Hspa2 as a novel biomarkers of incident heart failure.

IF 10.2 1区 医学 Q1 CARDIAC & CARDIOVASCULAR SYSTEMS
Marcella S Conning-Rowland, Marilena Giannoudi, Michael Drozd, Oliver I Brown, Nadira Y Yuldasheva, Chew W Cheng, Paul J Meakin, Sam Straw, John Gierula, Ramzi A Ajjan, Mark T Kearney, Eylem Levelt, Lee D Roberts, Kathryn J Griffin, Richard M Cubbon
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引用次数: 0

Abstract

Aims: Diabetes mellitus (DM) increases heart failure incidence and worsens prognosis, but its molecular basis is poorly defined in humans. We aimed to define the diabetic myocardial transcriptome and validate hits in their circulating protein form to define disease mechanisms and biomarkers.

Methods and results: RNA-sequencing data from the Genotype-Tissue Expression (GTEx) project was used to define differentially expressed genes (DEGs) in right atrial (RA) and left ventricular (LV) myocardium from people with vs. without DM (type 1 or 2). DEGs were validated as plasma proteins in the UK Biobank cohort, searching for directionally concordant differential expression. Validated plasma proteins were characterized in UK Biobank participants, irrespective of diabetes status, using cardiac magnetic resonance imaging, incident heart failure, and cardiovascular mortality. We found 32 and 32 DEGs associated with DM in the RA and LV, respectively, with no overlap between these. Plasma proteomic data were available for 12, with ERBB3, NRXN3, and HSPA2 (all LV hits) exhibiting directional concordance. Irrespective of DM status, lower circulating ERBB3 and higher HSPA2 were associated with impaired LV contractility and higher LV mass. Participants in the lowest quartile of circulating ERBB3 or highest quartile of circulating HSPA2 had increased incident heart failure and cardiovascular death vs. all other quartiles.

Conclusion: DM is characterized by lower Erbb3 and higher Hspa2 expression in the myocardium, with directionally concordant differences in their plasma protein concentration. These are associated with LV dysfunction, incident heart failure, and cardiovascular mortality.

糖尿病心肌转录组显示 Erbb3 和 Hspa2 是导致心力衰竭的新型生物标记物。
目的:糖尿病(DM)会增加心力衰竭的发病率并使预后恶化,但其在人类中的分子基础尚不明确。我们旨在确定糖尿病心肌转录组并验证其循环蛋白形式的命中率,以确定疾病机制和生物标志物:基因型-组织表达(GTEx)项目的 RNA 测序数据被用来定义糖尿病(1 型或 2 型)患者右心房(RA)和左心室(LV)心肌中的差异表达基因(DEGs)。DEGs 作为血浆蛋白在英国生物库队列中得到验证,搜索方向一致的差异表达。我们在 RA 和 LV 中分别发现了 32 和 32 个与 DM 相关的 DEGs,这些 DEGs 之间没有重叠。我们分别在RA和LV中发现了32个和32个与DM相关的DEGs,这些DEGs之间没有重叠。无论是否患有糖尿病,循环中较低的ERBB3和较高的HSPA2都与左心室收缩力受损和左心室质量增加有关。与所有其他四分位数相比,循环ERBB3最低四分位数或循环HSPA2最高四分位数的参与者发生心力衰竭和心血管死亡的几率增加:DM的特点是心肌中Erbb3表达量较低,Hspa2表达量较高,两者的血浆蛋白浓度存在方向性差异。这与左心室功能障碍、心力衰竭和心血管死亡有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Cardiovascular Research
Cardiovascular Research 医学-心血管系统
CiteScore
21.50
自引率
3.70%
发文量
547
审稿时长
1 months
期刊介绍: Cardiovascular Research Journal Overview: International journal of the European Society of Cardiology Focuses on basic and translational research in cardiology and cardiovascular biology Aims to enhance insight into cardiovascular disease mechanisms and innovation prospects Submission Criteria: Welcomes papers covering molecular, sub-cellular, cellular, organ, and organism levels Accepts clinical proof-of-concept and translational studies Manuscripts expected to provide significant contribution to cardiovascular biology and diseases
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