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β细胞中Hnf1β(MODY5)基因的选择性缺失导致基因表达改变和胰岛素释放缺陷。

Selective deletion of the Hnf1beta (MODY5) gene in beta-cells leads to altered gene expression and defective insulin release.

作者信息

Wang Li, Coffinier Catherine, Thomas Melissa K, Gresh Lionel, Eddu Ganiu, Manor Tal, Levitsky Lynne L, Yaniv Moshe, Rhoads David B

机构信息

Pediatric Endocrine Unit, MassGeneral Hospital for Children, Boston, Massachusetts 02114-2696, USA.

出版信息

Endocrinology. 2004 Aug;145(8):3941-9. doi: 10.1210/en.2004-0281. Epub 2004 May 13.

Abstract

Hepatocyte nuclear factor 1alpha (HNF1alpha) and HNF1beta (or vHNF1) are closely related transcription factors expressed in liver, kidney, gut, and pancreatic beta-cells. Many HNF1 target genes are involved in carbohydrate metabolism. Human mutations in HNF1alpha or HNF1beta lead to maturity-onset diabetes of the young (MODY3 and MODY5, respectively), and patients present with impaired glucose-stimulated insulin secretion. The underlying defect in MODY5 is not known. Analysis of HNF1beta deficiency in mice has not been possible because HNF1beta null mice die in utero. To examine the role of HNF1beta in glucose homeostasis, viable mice deleted for HNF1beta selectively in beta-cells (beta/H1beta-KO mice) were generated using a Cre-LoxP strategy. beta/H1beta-KO mice had normal growth, fertility, fed or fasted plasma glucose and insulin levels, pancreatic insulin content, and insulin sensitivity. However, beta/H1beta-KO mice exhibited impaired glucose tolerance with reduced insulin secretion compared with wild-type mice but preserved a normal insulin secretory response to arginine. Moreover, beta/H1beta-KO islets had increased HNF1alpha and Pdx-1, decreased HNF4 mRNA levels, and reduced glucose-stimulated insulin release. These results indicate that HNF1beta is involved in regulating the beta-cell transcription factor network and is necessary for glucose sensing or glycolytic signaling.

摘要

肝细胞核因子1α(HNF1α)和肝细胞核因子1β(或vHNF1)是在肝脏、肾脏、肠道和胰腺β细胞中表达的密切相关的转录因子。许多HNF1靶基因参与碳水化合物代谢。人类HNF1α或HNF1β的突变分别导致青年发病的成年型糖尿病(MODY3和MODY5),患者表现为葡萄糖刺激的胰岛素分泌受损。MODY5的潜在缺陷尚不清楚。由于HNF1β基因敲除小鼠在子宫内死亡,因此无法对小鼠中的HNF1β缺乏进行分析。为了研究HNF1β在葡萄糖稳态中的作用,使用Cre-LoxP策略构建了在β细胞中选择性缺失HNF1β的存活小鼠(β/H1β-KO小鼠)。β/H1β-KO小鼠的生长、生育能力、进食或禁食时的血浆葡萄糖和胰岛素水平、胰腺胰岛素含量以及胰岛素敏感性均正常。然而,与野生型小鼠相比,β/H1β-KO小鼠表现出葡萄糖耐量受损,胰岛素分泌减少,但对精氨酸的胰岛素分泌反应正常。此外,β/H1β-KO胰岛中HNF1α和Pdx-1增加,HNF4 mRNA水平降低,葡萄糖刺激的胰岛素释放减少。这些结果表明,HNF1β参与调节β细胞转录因子网络,是葡萄糖感知或糖酵解信号传导所必需的。

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