Chen Min, Cai Minying, Aprahamian Charles J, Georgeson Keith E, Hruby Victor, Harmon Carroll M, Yang Yingkui
Department of Surgery and Nutrition, University of Alabama, Birmingham, AL 35205, USA.
J Biol Chem. 2007 Jul 27;282(30):21712-9. doi: 10.1074/jbc.M702285200. Epub 2007 Jun 1.
Melanocortin 4 receptor (MC4R) plays an important role in the regulation of food intake and body weight. To determine the molecular basis of human MC4R (hMC4R) responsible for alpha-melanocortin-stimulating hormone (alpha-MSH) binding, in this study, we utilized both receptor domain exchange and site-directed mutagenesis studies to investigate the molecular determinants of hMC4R responsible for alpha-MSH binding and signaling. alpha-MSH is a potent agonist at hMC4R but not at hMC2R. Cassette substitutions of the second, third, fourth, fifth, and sixth transmembrane regions (TM) of the hMC4R with the homologous regions of hMC2R were performed and alpha-MSH binding and signaling were examined. Our results indicate that each chimeric receptor was expressed at the cell surface and the expression levels remain similar to that of the wild-type receptor. The cassette substitutions of the second, fourth, fifth, and sixth TMs of the hMC4R with homologous regions of the hMC2R did not significantly alter alpha-MSH binding affinity and potency except substitution of the TM3 of the hMC4R, suggesting that the conserved residues in TMs of the hMC4R are crucial for alpha-MSH binding and signaling. Further mutagenesis studies indicate that conserved residues Glu(100) in TM2, Asp(122), Asp(126) in TM3 and Trp(258), Phe(261), His(264) in TM6 are involved in alpha-MSH binding and signaling. In conclusion, our results suggest that the conserved residues in the TM2, TM3, and TM6 of the hMC4R are responsible for alpha-MSH binding and signaling.
黑皮质素4受体(MC4R)在食物摄入和体重调节中发挥着重要作用。为了确定人类MC4R(hMC4R)负责α-促黑素细胞激素(α-MSH)结合的分子基础,在本研究中,我们利用受体结构域交换和定点诱变研究来探究hMC4R负责α-MSH结合和信号传导的分子决定因素。α-MSH是hMC4R的有效激动剂,但不是hMC2R的有效激动剂。我们用hMC2R的同源区域对hMC4R的第二、第三、第四、第五和第六跨膜区(TM)进行了盒式替换,并检测了α-MSH的结合和信号传导。我们的结果表明,每个嵌合受体都在细胞表面表达,且表达水平与野生型受体相似。用hMC2R的同源区域对hMC4R的第二、第四、第五和第六TM进行盒式替换,除了hMC4R的TM3替换外,并未显著改变α-MSH的结合亲和力和效力,这表明hMC4R跨膜区中的保守残基对于α-MSH结合和信号传导至关重要。进一步的诱变研究表明,跨膜区2中的保守残基Glu(100)、跨膜区3中的Asp(122)、Asp(126)以及跨膜区6中的Trp(258)、Phe(261)、His(264)参与了α-MSH的结合和信号传导。总之,我们的结果表明,hMC4R跨膜区2、跨膜区3和跨膜区6中的保守残基负责α-MSH的结合和信号传导。