Lu Peng, Rha Geun Bae, Melikishvili Manana, Wu Guangteng, Adkins Brandon C, Fried Michael G, Chi Young-In
Department of Molecular and Cellular Biochemistry, University of Kentucky, Lexington, Kentucky 40536, USA.
J Biol Chem. 2008 Nov 28;283(48):33685-97. doi: 10.1074/jbc.M806213200. Epub 2008 Oct 1.
HNF4alpha (hepatocyte nuclear factor 4alpha) plays an essential role in the development and function of vertebrate organs, including hepatocytes and pancreatic beta-cells by regulating expression of multiple genes involved in organ development, nutrient transport, and diverse metabolic pathways. As such, HNF4alpha is a culprit gene product for a monogenic and dominantly inherited form of diabetes, known as maturity onset diabetes of the young (MODY). As a unique member of the nuclear receptor superfamily, HNF4alpha recognizes target genes containing two hexanucleotide direct repeat DNA-response elements separated by one base pair (DR1) by exclusively forming a cooperative homodimer. We describe here the 2.0 angstroms crystal structure of human HNF4alpha DNA binding domain in complex with a high affinity promoter element of another MODY gene, HNF1alpha, which reveals the molecular basis of unique target gene selection/recognition, DNA binding cooperativity, and dysfunction caused by diabetes-causing mutations. The predicted effects of MODY mutations have been tested by a set of biochemical and functional studies, which show that, in contrast to other MODY gene products, the subtle disruption of HNF4alpha molecular function can cause significant effects in afflicted MODY patients.
肝细胞核因子4α(HNF4α)在脊椎动物器官的发育和功能中起着至关重要的作用,这些器官包括肝细胞和胰腺β细胞,它通过调控参与器官发育、营养物质运输及多种代谢途径的多个基因的表达来实现这一功能。因此,HNF4α是一种单基因显性遗传糖尿病(即青年发病的成年型糖尿病,MODY)的致病基因产物。作为核受体超家族的独特成员,HNF4α通过专门形成协同同型二聚体来识别含有两个由一个碱基对隔开的六核苷酸直接重复DNA反应元件(DR1)的靶基因。我们在此描述了人HNF4α DNA结合结构域与另一个MODY基因HNF1α的高亲和力启动子元件形成复合物的2.0埃晶体结构,该结构揭示了独特的靶基因选择/识别、DNA结合协同性以及由糖尿病致病突变导致的功能障碍的分子基础。通过一系列生化和功能研究对MODY突变的预测效应进行了测试,结果表明,与其他MODY基因产物不同,HNF4α分子功能的细微破坏会在患病的MODY患者中产生显著影响。