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脂联素的保护作用及其下游靶点 HNF4α 和 PPARα 的分子特征在胰岛β细胞中的作用。

Protective roles of adiponectin and molecular signatures of HNF4α and PPARα as downstream targets of adiponectin in pancreatic β cells.

机构信息

Touchstone Diabetes Center, The University of Texas Southwestern Medical Center, Dallas, United States.

Center for Hypothalamic Research, University of Texas Southwestern Medical Center, Dallas, TX, USA.

出版信息

Mol Metab. 2023 Dec;78:101821. doi: 10.1016/j.molmet.2023.101821. Epub 2023 Oct 6.

Abstract

The disease progression of the metabolic syndrome is associated with prolonged hyperlipidemia and insulin resistance, eventually giving rise to impaired insulin secretion, often concomitant with hypoadiponectinemia. As an adipose tissue derived hormone, adiponectin is beneficial for insulin secretion and β cell health and differentiation. However, the down-stream pathway of adiponectin in the pancreatic islets has not been studied extensively. Here, along with the overall reduction of endocrine pancreatic function in islets from adiponectin KO mice, we examine PPARα and HNF4α as additional down-regulated transcription factors during a prolonged metabolic challenge. To elucidate the function of β cell-specific PPARα and HNF4α expression, we developed doxycycline inducible pancreatic β cell-specific PPARα (β-PPARα) and HNF4α (β-HNF4α) overexpression mice. β-PPARα mice exhibited improved protection from lipotoxicity, but elevated β-oxidative damage in the islets, and also displayed lowered phospholipid levels and impaired glucose-stimulated insulin secretion. β-HNF4α mice showed a more severe phenotype when compared to β-PPARα mice, characterized by lower body weight, small islet mass and impaired insulin secretion. RNA-sequencing of the islets of these models highlights overlapping yet unique roles of β-PPARα and β-HNF4α. Given that β-HNF4α potently induces PPARα expression, we define a novel adiponectin-HNF4α-PPARα cascade. We further analyzed downstream genes consistently regulated by this axis. Among them, the islet amyloid polypeptide (IAPP) gene is an important target and accumulates in adiponectin KO mice. We propose a new mechanism of IAPP aggregation in type 2 diabetes through reduced adiponectin action.

摘要

代谢综合征的疾病进展与长期的高血脂和胰岛素抵抗有关,最终导致胰岛素分泌受损,常伴有脂联素水平降低。作为一种脂肪组织来源的激素,脂联素有利于胰岛素分泌和β细胞的健康和分化。然而,脂联素在胰岛中的下游途径尚未得到广泛研究。在这里,我们研究了脂联素敲除小鼠胰岛中内分泌胰腺功能的整体降低,并检查了 PPARα 和 HNF4α 作为在长期代谢挑战中另外下调的转录因子。为了阐明β细胞特异性 PPARα 和 HNF4α 表达的功能,我们开发了一种可诱导的、胰腺β细胞特异性的 PPARα(β-PPARα)和 HNF4α(β-HNF4α)过表达小鼠。β-PPARα 小鼠表现出对脂毒性的改善保护作用,但胰岛中的β氧化损伤增加,同时还表现出磷脂水平降低和葡萄糖刺激的胰岛素分泌受损。与β-PPARα 小鼠相比,β-HNF4α 小鼠表现出更为严重的表型,其特征为体重降低、胰岛体积减小和胰岛素分泌受损。这些模型胰岛的 RNA 测序突出了β-PPARα 和β-HNF4α 的重叠但又独特的作用。鉴于β-HNF4α 能够强烈诱导 PPARα 的表达,我们定义了一个新的脂联素-HNF4α-PPARα 级联反应。我们进一步分析了受该轴一致调控的下游基因。其中,胰岛淀粉样多肽(IAPP)基因是一个重要的靶基因,在脂联素敲除小鼠中积累。我们提出了一种通过减少脂联素作用导致 2 型糖尿病中 IAPP 聚集的新机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5925/10598053/7464eb970003/gr1.jpg

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