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脂肪组织来源的微小RNA-450a-5p通过下调双特异性磷酸酶10诱导2型糖尿病。

Adipose tissue-derived microRNA-450a-5p induces type 2 diabetes mellitus by downregulating DUSP10.

作者信息

Zhu Jiaojiao, Hou Yanting, Yu Wei, Wang Jingzhou, Chu Xiaolong, Zhang Xueting, Pang Huai, Ma Dingling, Tang Yihan, Li Menghuan, Yuan Chenggang, Xie Jianxin, Wang Cuizhe, Zhang Jun

机构信息

Medical College of Shihezi University, Bei-Er-Lu, Shihezi, Xinjiang, 832000, China.

School of Pharmacy, Xinjiang Shihezi University, Xinjiang, 832002, China.

出版信息

Mol Biomed. 2025 Feb 6;6(1):7. doi: 10.1186/s43556-025-00247-w.

Abstract

Type 2 diabetes mellitus (T2DM) has rapidly increased worldwide, emerging as the fifth leading cause of death. The treatment of T2DM is challenging due to the side effects of oral hypoglycemic drugs and the limited efficacy of long-term insulin therapy, which can lead to insulin resistance (IR). Consequently, there is significant in discovering new drugs that have minimal side effects and a pronounced hypoglycemic effect. In obesity, microRNA levels have been implicated in glucose metabolism disorders and T2DM, although many aspects remain unresolved. Here, we confirmed that visceral adipose tissue and serum microRNA-450a-5p content increased under obesity and T2DM, and it was significantly positively associated with fasting blood glucose, triglycerides, cholesterol, low-density lipoproteins-cholesterol levels of the subjects. In high-fat diet (HFD)-induced obese mice, microRNA-450a-5p expression was increased in the serum, liver, and white adipose tissue. Moreover, the adipose Dicer-knockout mouse model was constructed to identify adipose tissue as the main source of microRNA-450a-5p. microRNA-450a-5p could inactivate the insulin signal pathway by targeting the inhibited Dual Specificity Phosphatase 10 (DUSP10) and inducing IR and glucose metabolism disorders in vitro cultured hepatocytes and adipocytes. Additionally, microRNA-450a-5p was found to regulate DUSP10 expression and insulin signaling activity, influencing glucose tolerance and insulin sensitivity across various models, including normal diet, HFD-induced obese, adipose tissue-specific microRNA-450a-5p-knockout, and db/db mice. Furthermore, gallic acid might play a potential role in inhibiting glucose levels by decreasing microRNA-450a-5p expression. Thus, microRNA-450a-5p emerges as an attractive therapeutic target for addressing obesity, IR, and T2DM.

摘要

2型糖尿病(T2DM)在全球范围内迅速增加,已成为第五大主要死因。由于口服降糖药的副作用以及长期胰岛素治疗效果有限(可能导致胰岛素抵抗(IR)),T2DM的治疗具有挑战性。因此,寻找副作用最小且具有显著降糖作用的新药具有重要意义。在肥胖症中,微小RNA水平与葡萄糖代谢紊乱和T2DM有关,尽管许多方面仍未解决。在此,我们证实肥胖和T2DM状态下内脏脂肪组织和血清中微小RNA-450a-5p含量增加,且与受试者的空腹血糖、甘油三酯、胆固醇、低密度脂蛋白胆固醇水平显著正相关。在高脂饮食(HFD)诱导的肥胖小鼠中,血清、肝脏和白色脂肪组织中微小RNA-450a-5p表达增加。此外,构建了脂肪组织Dicer基因敲除小鼠模型,以确定脂肪组织是微小RNA-450a-5p的主要来源。微小RNA-450a-5p可通过靶向抑制双特异性磷酸酶10(DUSP10)使胰岛素信号通路失活,并在体外培养的肝细胞和脂肪细胞中诱导IR和葡萄糖代谢紊乱。此外,发现在包括正常饮食、HFD诱导的肥胖、脂肪组织特异性微小RNA-450a-5p基因敲除和db/db小鼠在内的各种模型中,微小RNA-450a-5p调节DUSP10表达和胰岛素信号活性,影响葡萄糖耐量和胰岛素敏感性。此外,没食子酸可能通过降低微小RNA-450a-5p表达在抑制血糖水平方面发挥潜在作用。因此,微小RNA-450a-5p成为解决肥胖、IR和T2DM的一个有吸引力的治疗靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/89f8/11803021/6af2198f203e/43556_2025_247_Fig1_HTML.jpg

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