Siqueira Ionara Rodrigues, de Souza Rodrigues Andressa, Flores Marina Siqueira, Vieira Cunha Eduarda Letícia, Goldberg Madeleine, Harmon Brennan, Batabyal Rachael, Freishtat Robert J, Cechinel Laura Reck
Programa de Pós-Graduação em Ciências Biológicas: Farmacologia e Terapêutica, Universidade Federal do Rio Grande do Sul, Porto Alegre, Brazil.
Programa de Pós-Graduação em Ciências Biológicas: Fisiologia, Universidade Federal do Rio Grande do Sul, Porto Alegre, Brazil.
Front Aging. 2022 Aug 9;3:867100. doi: 10.3389/fragi.2022.867100. eCollection 2022.
Aging is associated with adipose tissue dysfunction and is recognized as a risk factor for shortened life span. Considering that findings have shown the involvement of microRNA in extracellular vesicles and particles (EVPs) on senescence, we hypothesized that circulating EVPs derived from adipocytes can be involved in the aging process their microRNA cargo. We aimed to determine the microRNA profiles of circulating EVPs derived from adipocytes (FABP4+) from aged and young adult animals and to perform prediction of their downstream signaling effects. Plasma was obtained from rats (3 and 21 months old), and adipocyte-derived EVPs were isolated using the commercially available kit. Fatty acid-binding protein 4 (FABP4) was used for adipocyte-derived EVPs isolation; microRNA isolation and microarray expression analysis were performed. The analysis revealed 728 miRNAs, 32 were differentially between groups ( < 0.05; fold change ≥ |1.1|), of which 15 miRNAs were upregulated and 17 were downregulated in circulating EVPs from aged animals compared to young adults. A conservative filter was applied, and 18 microRNAs had experimentally validated and highly conserved predicted mRNA targets, with a total of 2,228 mRNAs. Canonical pathways, disease and functions, and upstream regulator analyses were performed using IPA-QIAGEN, allowing a global and interconnected evaluation. IPA categories impacted negatively were cell cycle, cellular development, cellular growth and proliferation, and tissue development, while those impacted positively were "digestive system cancer" and "endocrine gland tumor." Interestingly, the upregulated miR-15-5p targets several cyclins, such as CCND1 and CCND2, and miR-24-3p seems to target CDK4 (cyclin-dependent kinase 4); then potentially inhibiting their expression, both miRNAs can induce a negative regulation of cell cycle progression. In contrast, silencing of negative cell cycle checkpoint regulators, such as p21 and p16, can be predicted, which can induce impairment in response to genotoxic stressors. In addition, predicted targets, such as SMAD family members, seem to be involved in the positive control of digestive and endocrine tumors. Taken together, this exploratory study indicates that miRNA signature in circulating adipocyte-derived EVPs may be involved with the double-edged sword of cellular senescence, including irreversible proliferation arrest and tissue-dependent cancer, and seems to be suitable for further validation and confirmatory studies.
衰老与脂肪组织功能障碍相关,被认为是寿命缩短的一个风险因素。鉴于研究结果表明细胞外囊泡和颗粒(EVPs)中的微小RNA参与了衰老过程,我们推测源自脂肪细胞的循环EVPs可能通过其携带的微小RNA参与衰老过程。我们旨在确定老年和年轻成年动物脂肪细胞(FABP4+)衍生的循环EVPs的微小RNA谱,并对其下游信号传导效应进行预测。从大鼠(3个月和21个月大)获取血浆,使用市售试剂盒分离脂肪细胞衍生的EVPs。脂肪酸结合蛋白4(FABP4)用于分离脂肪细胞衍生的EVPs;进行微小RNA分离和微阵列表达分析。分析发现728种微小RNA,两组之间有32种存在差异(<0.05;倍数变化≥|1.1|),其中与年轻成年动物相比,老年动物循环EVPs中有15种微小RNA上调,17种下调。应用保守筛选,18种微小RNA具有经过实验验证且高度保守的预测mRNA靶标,共有2228个mRNA。使用IPA-QIAGEN进行经典通路、疾病和功能以及上游调节因子分析,从而进行全面且相互关联的评估。受到负面影响的IPA类别包括细胞周期、细胞发育、细胞生长和增殖以及组织发育,而受到正面影响的是“消化系统癌症”和“内分泌腺肿瘤”。有趣的是,上调的miR-15-5p靶向几种细胞周期蛋白,如CCND1和CCND2,miR-24-3p似乎靶向CDK4(细胞周期蛋白依赖性激酶4);那么这两种微小RNA都可能抑制它们的表达,从而诱导细胞周期进程的负调控。相反,可以预测负性细胞周期检查点调节因子如p21和p16的沉默,这可能导致对基因毒性应激源反应的受损。此外,预测的靶标如SMAD家族成员似乎参与了消化和内分泌肿瘤的正向调控。综上所述,这项探索性研究表明,循环脂肪细胞衍生的EVPs中的微小RNA特征可能与细胞衰老的双刃剑有关,包括不可逆的增殖停滞和组织依赖性癌症,似乎适合进一步的验证和确证研究。