Bibiloni Pere, Pomar Catalina A, Palou Andreu, Sánchez Juana, Serra Francisca
Laboratory of Molecular Biology, Nutrition and Biotechnology (Nutrigenomics, Biomarkers and Risk Evaluation), University of the Balearic Islands, Palma, Spain.
Instituto de Investigación Sanitaria Illes Balears, IdISBa, Palma, Spain.
Biofactors. 2023 Mar;49(2):365-378. doi: 10.1002/biof.1914. Epub 2022 Oct 30.
Increased miR-222 levels are associated with metabolic syndrome, insulin resistance, and diabetes. Moreover, rats fed an obesogenic diet during lactation have higher miR-222 content in breast milk and the offspring display greater body fat mass and impaired insulin sensitivity in adulthood. In order to investigate the molecular mechanisms involved and to dissect the specific effects of miR-222 on adipocytes, transfection with a mimic or an inhibitor of miR-222 has been conducted on 3T3-L1 preadipocytes. 3T3-L1 cells were transfected with either a mimic or an inhibitor of miR-222 and collected after 2 days (preadipocytes) or 8 days (mature adipocytes) for transcriptomic analysis. Results showed a relevant impact on pathways associated with insulin signaling, lipid metabolism and adipogenesis. Outcomes in key genes and proteins were further analyzed with quantitative reverse transcription polymerase chain reaction and Western Blotting, respectively, which displayed a general inhibition in important effectors of the identified routes under miR-222 mimic treatment in preadipocytes. Although to a lesser extent, this overall signature was maintained in differentiated adipocytes. Altogether, miR-222 exerts a direct effect in metabolic pathways of 3T3-L1 adipocytes that are relevant to adipocyte function, limiting adipogenesis and insulin signaling pathways, offering a mechanistic explanation for its reported association with metabolic diseases.
miR-222水平升高与代谢综合征、胰岛素抵抗和糖尿病相关。此外,在哺乳期喂食致肥胖饮食的大鼠,其母乳中miR-222含量更高,并且后代在成年后表现出更大的体脂量和受损的胰岛素敏感性。为了研究其中涉及的分子机制并剖析miR-222对脂肪细胞的具体影响,已对3T3-L1前脂肪细胞进行了miR-222模拟物或抑制剂的转染。用miR-222模拟物或抑制剂转染3T3-L1细胞,并在2天(前脂肪细胞)或8天(成熟脂肪细胞)后收集用于转录组分析。结果显示对与胰岛素信号传导、脂质代谢和脂肪生成相关的途径有显著影响。分别用定量逆转录聚合酶链反应和蛋白质免疫印迹进一步分析关键基因和蛋白质的结果,其显示在miR-222模拟物处理下前脂肪细胞中所确定途径的重要效应器普遍受到抑制。尽管程度较轻,但这种总体特征在分化的脂肪细胞中得以维持。总之,miR-222在3T3-L1脂肪细胞与脂肪细胞功能相关的代谢途径中发挥直接作用,限制脂肪生成和胰岛素信号通路,为其与代谢疾病的报道关联提供了一种机制解释。