Pheiffer Carmen, Dias Stephanie, Willmer Tarryn, Pace Ryan, Aagaard Kjersti, Louw Johan
Biomedical Research and Innovation Platform, South African Medical Research Council, Tygerberg, South Africa.
Division of Medical Physiology, Faculty of Health Sciences, Stellenbosch University, Tygerberg, South Africa.
Exp Clin Endocrinol Diabetes. 2019 Sep;127(8):524-532. doi: 10.1055/a-0619-4576. Epub 2018 Jun 11.
MicroRNAs (miRNAs) play a critical role in metabolic regulation. Recently, we identified novel miRNAs in the whole blood of South African women of mixed ethnic ancestry. The aim of this study was to investigate whether five of these novel miRNAs are expressed in serum and whether their expression is altered during metabolic dysregulation.
Expression levels of the five novel miRNAs (MYN08, MYNO22, MYN059, MYNO66 and MYNO95) were measured in the serum of women with Impaired Glucose Tolerance (IGT) and Normoglycemia (NGT) (n=24), and in the whole blood of vervet monkeys fed a high-fat or standard diet (n=16) using quantitative real-time PCR.
Only three of the selected novel miRNAs (MYNO8, MYNO22 and MYNO66) were expressed in serum. The expression of MYN08 and MYNO22 were associated with fasting glucose and insulin concentrations, decreased during IGT and able to predict IGT. The expression of these miRNAs were similarly decreased in vervet monkeys fed a high-fat diet. analysis identified a total of 291 putative messenger RNA targets for MYNO8 and MYNO22, including genes involved in gluconeogenesis, carbohydrate metabolism, glucose homeostasis and lipid transport.
Two novel miRNAs, MYNO8 and MYNO22, are associated with metabolic dysregulation in South African women of mixed ethnic ancestry and with high-fat diet feeding in vervet monkeys. Furthermore, putative gene targets were enriched in biological processes involved in key aspects of glucose regulation, which strengthens the candidacy of these miRNAs as biomarkers for dysglycemia, and warranting further studies to assess their clinical applicability.
微小RNA(miRNA)在代谢调节中起关键作用。最近,我们在南非混合种族血统女性的全血中鉴定出新型miRNA。本研究的目的是调查这五种新型miRNA是否在血清中表达,以及它们的表达在代谢失调期间是否发生改变。
使用定量实时PCR检测糖耐量受损(IGT)和血糖正常(NGT)的女性(n = 24)血清中以及喂食高脂或标准饮食的黑长尾猴(n = 16)全血中五种新型miRNA(MYN08、MYNO22、MYN059、MYNO66和MYNO95)的表达水平。
所选的新型miRNA中只有三种(MYNO8、MYNO22和MYNO66)在血清中表达。MYN08和MYNO22的表达与空腹血糖和胰岛素浓度相关,在IGT期间降低且能够预测IGT。在喂食高脂饮食的黑长尾猴中,这些miRNA的表达同样降低。分析共鉴定出MYNO8和MYNO22的291个推定信使RNA靶标,包括参与糖异生、碳水化合物代谢、葡萄糖稳态和脂质转运的基因。
两种新型miRNA,MYNO8和MYNO22,与南非混合种族血统女性的代谢失调以及黑长尾猴的高脂饮食喂养有关。此外,推定的基因靶标在涉及葡萄糖调节关键方面的生物学过程中富集,这加强了这些miRNA作为血糖异常生物标志物的候选资格,并值得进一步研究以评估它们的临床适用性。