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首页> 外文期刊>Journal of Medicinal Chemistry >Secondary Structure of the Third Extracellular Loop Responsible for Ligand Selectivity of a Mammalian Gonadotropin-Releasing Hormone Receptor
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Secondary Structure of the Third Extracellular Loop Responsible for Ligand Selectivity of a Mammalian Gonadotropin-Releasing Hormone Receptor

机译:负责配体的哺乳动物促性腺激素释放激素受体的配体选择性的第三个细胞外环的二级结构。

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The extracellular loop 3 (ECL3) of the mammalian gonadotropin-releasing hormone receptor (GnRH-R) contains an acidic acid (Glu~(301) in the mouse GnRH-R) that confers agonist selectivity for Arg~8 in mammalian GnRH. It is proposed that a specific conformation of ECL3 is necessary to orientate the carboxyl side chain of the acidic residue for interaction with Arg~8 of GnRH, which is supported by decreased affinity for Arg~8 GnRH but not Gln~8 GnRH when an adjacent Pro is mutated to Ala. To probe the structural contribution of the loop domain to the proposed presentation of the carboxyl side chain, we synthesized a model peptide (CGPEMLNRVSEPGC) representing residues 293-302 of mouse ECL3, where Cys and Gly residues are added symmetrically at the N and C termini, respectively, allowing the introduction of a disulfide bridge to simulate the distances at which the ECL3 is tethered to the transmembrane domains 6 and 7 receptor. The ability of the ECL3 peptide to bind GnRH with low affinity was demonstrated by its inhibition of GnRH stimulation of inositol phosphate production in cells expressing the GnRH-R. The CD bands of the ECL3 peptides exhibited a superposition of predominantly unordered structure and partial contributions from β-sheet structure. Likewise, the analysis of the amide I and amide III bands from micro-Raman and FT Raman experiments revealed mainly unordered conformations of the cyclic and of the linear peptide. NMR data demonstrated the presence of a β-hairpin among an ensemble of largely disordered structures in the cyclic peptide. The location of the turn linking the two strands of the hairpin was assigned to the three central residues L~(296), N~(297), and R~(298). A small population of structured species among an ensemble of predominantly random coil conformation suggests that the unliganded receptor represents a variety of structural conformers, some of which have the potential to make contacts with the ligand. We propose a mechanism of receptor activation whereby binding of the agonist to the inactive receptor state induces and stabilizes a particular structural state of the loop domain, leading to further conformational rearrangements across the transmembrane domain and signal propagating interaction with G proteins. Interaction of the Glu~(300) of the receptor with Arg~8 of the receptor with Arg~8 of GnRH induces a folded configuration of the ligand. Our proposal thus suggests that conformational changes of both ligand and receptors result from this interaction.
机译:哺乳动物促性腺激素释放激素受体(GnRH-R)的细胞外环3(ECL3)包含一种酸性酸(小鼠GnRH-R中的Glu〜(301)),赋予哺乳动物GnRH中的Arg〜8激动剂选择性。有人提出,要使酸性残基的羧基侧链与GnRH的Arg〜8相互作用,必须要有一个特定的ECL3构象,这是由于对Arg〜8 GnRH的亲和力降低,而邻近时对Gln〜8 GnRH的亲和力却降低了。 Pro突变为Ala。为了探究环结构域对拟议的羧基侧链表达的结构贡献,我们合成了代表小鼠ECL3残基293-302的模型肽(CGPEMLNRVSEPGC),其中Cys和Gly残基对称添加分别在N和C末端分别引入二硫键,以模拟ECL3与跨膜结构域6和7受体的连接距离。 ECL3肽以低亲和力结合GnRH的能力已通过抑制GnRH刺激表达GnRH-R的细胞产生磷酸肌醇来证明。 ECL3肽的CD谱带显示主要是无序结构的叠加,以及来自β-折叠结构的部分贡献。同样,通过微拉曼和FT拉曼实验对酰胺I和酰胺III谱带的分析显示,环状肽和线性肽主要是无序构象。 NMR数据表明在环状肽中大量无序结构的集合中存在β-发夹。连接发夹的两条链的转角的位置被指定为三个中央残基L〜(296),N〜(297)和R〜(298)。在主要为随机线圈构象的集合中,少数结构化物种表明未配体受体代表多种结构构象异构体,其中一些具有与配体接触的潜力。我们提出了一种受体激活的机制,其中激动剂与非活性受体状态的结合诱导并稳定了环结构域的特定结构状态,从而导致跨膜结构域的进一步构象重排以及信号与G蛋白的相互作用。受体的Glu〜(300)与受体的Arg〜8与GnRH的Arg〜8的相互作用诱导了配体的折叠构型。因此,我们的建议表明,配体和受体的构象变化均源于这种相互作用。

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