Thomé Juliana Gil, Mendoza Mariana Recamonde, Cheuiche Amanda Veiga, La Porta Vanessa Laubert, Silvello Daiane, Dos Santos Kátia Gonçalves, Andrades Michael Everton, Clausell Nadine, Rohde Luis Eduardo, Biolo Andréia
Post-Graduate Program in Cardiology and Cardiovascular Sciences, Universidade Federal do Rio Grande do Sul, Porto Alegre, RS, Brazil.
Experimental and Molecular Cardiovascular Laboratory, Hospital de Clínicas de Porto Alegre, Porto Alegre, RS, Brazil.
Gene. 2015 Dec 10;574(1):1-10. doi: 10.1016/j.gene.2015.07.068. Epub 2015 Jul 26.
MicroRNAs (miRs) regulate processes involved in both cardiac remodeling and obesity. We investigated if the expression of selected miRs in patients with heart failure (HF) is influenced by the presence of obesity.
In this case-control study, we compared plasma levels of miR-21, -130b, -221, -423-5p, and the -221/-130b ratio in 57 age- and gender-matched subjects: 40 HF patients (20 obese HF and 20 lean HF) and 17 lean healthy controls. Body composition was estimated by bioelectrical impedance analysis. MiRs were measured by quantitative reverse transcription-PCR. Bioinformatics analysis was performed based on miRs findings to predict their putative targets and investigate their biological function.
HF was associated with increased miR-423-5p levels in both lean and obese patients (P<0.05 vs. controls) without differences between HF groups. MiR-130b levels were reduced in obese HF patients compared with HF lean (P=0.036) and controls (P=0.025). MiR-221 levels were non-significantly increased in obese HF patients. MiR-21 levels were not different among the groups. MiR-221/-130b ratio was increased in obese HF patients, and was positively associated with body fat percentage (r=0.43; P=0.002), body mass index (r=0.44; P=0.002), and waist circumference (r=0.40; P=0.020). Computational prediction of target genes followed by functional enrichment analysis indicated a relevant role of miR-130b and miR-221 in modulating the expression of genes associated to cardiovascular and endocrine diseases, and suggested their influence in important signaling mechanisms and in numerous processes related to the circulatory and endocrine systems.
In HF patients, the presence of obesity is associated with a differential expression of selected miRs and the miR-221/-130b ratio had significant correlations with adiposity parameters. Computational target prediction analysis identified several interrelated pathways targeted by miR-130b and miR-221 with a known relationship with endocrine and cardiovascular diseases, representing potential mechanisms to be further validated.
微小RNA(miR)调控心脏重塑和肥胖相关的过程。我们研究了心力衰竭(HF)患者中特定miR的表达是否受肥胖的影响。
在这项病例对照研究中,我们比较了57名年龄和性别匹配的受试者的血浆miR-21、-130b、-221、-423-5p水平以及-221/-130b比值:40名HF患者(20名肥胖HF患者和20名非肥胖HF患者)和17名非肥胖健康对照。通过生物电阻抗分析评估身体成分。通过定量逆转录PCR测量miR。基于miR的研究结果进行生物信息学分析,以预测其假定靶点并研究其生物学功能。
在非肥胖和肥胖HF患者中,HF均与miR-423-5p水平升高相关(与对照组相比,P<0.05),HF组之间无差异。与非肥胖HF患者相比,肥胖HF患者的miR-130b水平降低(P=0.036),与对照组相比也降低(P=0.025)。肥胖HF患者的miR-221水平无显著升高。各组间miR-21水平无差异。肥胖HF患者的miR-221/-130b比值升高,且与体脂百分比(r=0.43;P=0.002)、体重指数(r=0.44;P=0.002)和腰围(r=0.40;P=0.020)呈正相关。对靶基因进行计算预测并随后进行功能富集分析,结果表明miR-130b和miR-221在调节与心血管和内分泌疾病相关基因的表达中起相关作用,并提示它们对重要信号机制以及与循环和内分泌系统相关的众多过程有影响。
在HF患者中,肥胖与特定miR的差异表达相关,且miR-221/-130b比值与肥胖参数有显著相关性。计算靶标预测分析确定了miR-130b和miR-221靶向的几个相互关联的途径,这些途径与内分泌和心血管疾病存在已知关系,代表了有待进一步验证的潜在机制。