Gupta Rana K, Gao Nan, Gorski Regina K, White Peter, Hardy Olga T, Rafiq Kiran, Brestelli John E, Chen Guang, Stoeckert Christian J, Kaestner Klaus H
Department of Genetics and Institute for Diabetes, Obesity, and Metabolism, University of Pennsylvania School of Medicine, Philadelphia, Pennsylvania 19104, USA.
Genes Dev. 2007 Apr 1;21(7):756-69. doi: 10.1101/gad.1535507.
The failure to expand functional pancreatic beta-cell mass in response to increased metabolic demand is a hallmark of type 2 diabetes. Lineage tracing studies indicate that replication of existing beta-cells is the principle mechanism for beta-cell expansion in adult mice. Here we demonstrate that the proliferative response of beta-cells is dependent on the orphan nuclear receptor hepatocyte nuclear factor-4alpha (HNF-4alpha), the gene that is mutated in Maturity-Onset Diabetes of the Young 1 (MODY1). Computational analysis of microarray expression profiles from isolated islets of mice lacking HNF-4alpha in pancreatic beta-cells reveals that HNF-4alpha regulates selected genes in the beta-cell, many of which are involved in proliferation. Using a physiological model of beta-cell expansion, we show that HNF-4alpha is required for beta-cell replication and the activation of the Ras/ERK signaling cascade in islets. This phenotype correlates with the down-regulation of suppression of tumorigenicity 5 (ST5) in HNF-4alpha mutants, which we identify as a novel regulator of ERK phosphorylation in beta-cells and a direct transcriptional target of HNF-4alpha in vivo. Together, these results indicate that HNF-4alpha is essential for the physiological expansion of adult beta-cell mass in response to increased metabolic demand.
未能根据代谢需求增加而扩大功能性胰腺β细胞量是2型糖尿病的一个标志。谱系追踪研究表明,现有β细胞的复制是成年小鼠β细胞扩增的主要机制。在此,我们证明β细胞的增殖反应依赖于孤儿核受体肝细胞核因子-4α(HNF-4α),该基因在青年发病的成年型糖尿病1型(MODY1)中发生突变。对胰腺β细胞中缺乏HNF-4α的小鼠分离胰岛的微阵列表达谱进行计算分析,结果显示HNF-4α调节β细胞中的特定基因,其中许多基因参与增殖。使用β细胞扩增的生理模型,我们表明HNF-4α是β细胞复制和胰岛中Ras/ERK信号级联激活所必需的。这种表型与HNF-4α突变体中致瘤性抑制因子5(ST5)的下调相关,我们将其鉴定为β细胞中ERK磷酸化的新型调节因子以及体内HNF-4α的直接转录靶标。总之,这些结果表明HNF-4α对于成年β细胞量响应代谢需求增加的生理性扩增至关重要。