Oosterom J, Nijenhuis W A, Schaaper W M, Slootstra J, Meloen R H, Gispen W H, Burbach J P, Adan R A
Rudolf Magnus Institute for Neurosciences, Department of Medical Pharmacology, Utrecht University, P.O. Box 80040, 3508 TA Utrecht, The Netherlands.
J Biol Chem. 1999 Jun 11;274(24):16853-60. doi: 10.1074/jbc.274.24.16853.
Melanocortin peptides regulate a variety of physiological processes. Five melanocortin receptors (MC-R) have been cloned and the MC3R and MC4R are the main brain MC receptors. The aim of this study was to identify structural requirements in both ligand and receptor that determine gamma-melanocyte-stimulating hormone (MSH) selectivity for the MC3R versus the MC4R. Substitution of Asp10 in [Nle4]Lys-gamma2-MSH for Gly10 from [Nle4]alpha-MSH, increased both activity and affinity for the MC4R while the MC3R remained unaffected. Analysis of chimeric MC3R/MC4Rs and mutant MC4Rs showed that Tyr268 of the MC4R mainly determined the low affinity for [Nle4]Lys-gamma2-MSH. The data demonstrate that Asp10 determines selectivity for the MC3R, however, not through direct side chain interactions, but probably by influencing how the melanocortin core sequence is presented to the receptor-binding pocket. This is supported by mutagenesis of Tyr268 to Ile in the MC4R which increased affinity and activity for [Nle4]Lys-gamma2-MSH, but decreased affinity for two peptides with constrained cyclic structure of the melanocortin core sequence, MT-II and [D-Tyr4]MT-II, that also displayed lower affinity for the MC3R. This study provides a general concept for peptide receptor selectivity, in which the major determinant for a selective receptor interaction is the conformational presentation of the core sequence in related peptides to the receptor-binding pocket.
促黑素肽调节多种生理过程。已克隆出五种促黑素受体(MC-R),其中MC3R和MC4R是主要的脑促黑素受体。本研究的目的是确定配体和受体中的结构要求,这些要求决定了γ-促黑素(MSH)对MC3R与MC4R的选择性。将[Nle4]Lys-γ2-MSH中的Asp10替换为[Nle4]α-MSH中的Gly10,增加了对MC4R的活性和亲和力,而MC3R则不受影响。对嵌合MC3R/MC4R和突变型MC4R的分析表明,MC4R的Tyr268主要决定了对[Nle4]Lys-γ2-MSH的低亲和力。数据表明,Asp10决定了对MC3R的选择性,然而,不是通过直接的侧链相互作用,而是可能通过影响促黑素核心序列呈现给受体结合口袋的方式。MC4R中Tyr268突变为Ile支持了这一点,这增加了对[Nle4]Lys-γ2-MSH的亲和力和活性,但降低了对两种具有促黑素核心序列受限环状结构的肽MT-II和[D-Tyr4]MT-II的亲和力,这两种肽对MC3R的亲和力也较低。本研究提供了一个肽受体选择性的一般概念,其中选择性受体相互作用的主要决定因素是相关肽中核心序列向受体结合口袋的构象呈现。