首页> 外文期刊>Biochemistry >Receptor-antagonist interactions in the complexes of agouti and agouti-related protein with human melanocortin 1 and 4 receptors
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Receptor-antagonist interactions in the complexes of agouti and agouti-related protein with human melanocortin 1 and 4 receptors

机译:刺豚鼠和刺豚鼠相关蛋白与人类黑皮质素1和4受体复合物中的受体-拮抗剂相互作用

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摘要

The molecular interactions between human melanocortin receptor-1 and -4 (hMCIR and hMC4R) and their endogenous antagonists, agouti signaling protein (ASIP) and agouti-related protein (AGRP), were assessed by studying the effects of site-directcd mutations on the binding affinity of I-125-ASIP[90-132(L89Y) and I-125-AGRP(86-132). Mutations of homologous residues from transmembrane helices (TMHs) 3 and 6 and extracellular loop (EL) 3 (D121A, T124A, F257A, and F277M in hMCIR and D126A, I129A F261A, and M281F in hMC4R) impaired binding of both antagonists to hMC4R and binding of the ASIP fragment to hMCIR. However, the mutations in TMH2 (E94A in hMCIR and E100A in hMC4R), TMH7 (F280A in hMCIR and F284A in hMC4R), and EL2 (Y183S, H184S, and D184H in hMCIR) only significantly affected binding of the ASIP fragment. The dependence of agonist binding on the dithiothreitol concentration followed a monophasic curve for wild-type hMC4R and its C40A, C271A, and C279A mutants and a biphasic curve for hMClR, suggesting the presence of at least one structurally and functionally essential disulfide bond in both wild-type receptors and the hMC4R mutants. Models of complexes of both receptors with the ASIP fragment and hMC4R with the AGRP fragment were calculated using constraints from the experimental structures of rhodopsin and AGRP fragments, a set of deduced hydrogen bonds, supplemented by two proposed disulfide bridges and receptor-ligand contacts, derived from our mutagenesis data. In the models of the ASIP fragment complexed with both receptors, the core ligand tripeptide, Arg-Phe-Phe, positioned between TMHs 3 and 6, is shifted toward TMHs 2 and 7 relative to its position in the AGRP-hMC4R model, while the N-terininal loop and two central disulfides of the antagonists interact with EL2 of the receptors.
机译:通过研究定点突变对人类黑素皮质激素受体-1和-4(hMCIR和hMC4R)与它们的内源性拮抗剂刺鼠信号蛋白(ASIP)和刺鼠相关蛋白(AGRP)之间的分子相互作用,进行了评估。 I-125-ASIP [90-132(L89Y)和I-125-AGRP(86-132)的结合亲和力。跨膜螺旋(TMHs)3和6和细胞外环(EL)3(hMCIR中的D121A,T124A,F257A和F277M和hMC4R中的D126A,I129A F261A和M281F)的同源残基突变)削弱了两种拮抗剂与hMC4R的结合ASIP片段与hMCIR的结合。但是,TMH2(hMCIR中的E94A和hMC4R中的E100A),TMH7(hMCIR中的F280A和hMC4R中的F284A)和EL2(hMCIR中的Y183S,H184S和D184H)的突变仅显着影响ASIP片段的结合。激动剂结合对二硫苏糖醇浓度的依赖性遵循野生型hMC4R及其C40A,C271A和C279A突变体的单相曲线以及hMClR的双相曲线,这表明在野生型中均存在至少一个结构上和功能上必不可少的二硫键型受体和hMC4R突变体。利用视紫红质和AGRP片段的实验结构的约束条件,推导了一组推定的氢键,并辅以两个拟议的二硫键和受体-配体接触,得出了带有ASIP片段的两种受体和带有AGRP片段的hMC4R与AGRP片段的复合物模型。从我们的诱变数据。在与两种受体复合的ASIP片段模型中,相对于其在AGRP-hMC4R模型中的位置,位于TMH 3和6之间的核心配体三肽Arg-Phe-Phe向TMH 2和7转移。拮抗剂的N末端环和两个中央二硫键与受体的EL2相互作用。

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