首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Solution structure of the transmembrane 2 domain of the human melanocortin-4 receptor in sodium dodecyl sulfate (SDS) micelles and the functional implication of the D90N mutant
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Solution structure of the transmembrane 2 domain of the human melanocortin-4 receptor in sodium dodecyl sulfate (SDS) micelles and the functional implication of the D90N mutant

机译:十二烷基硫酸钠(SDS)胶束中人黑皮质素4受体跨膜2结构域的溶液结构和D90N突变体的功能含义

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摘要

The melanocortin receptors (MCRs) are members of the G protein-coupled receptor (GPCR) 1 superfamily with seven transmembrane (TM) domains. Among them, the melanocortin-4 receptor (MC4R) subtype has been highlighted recently by genetic studies in obese humans. In particular, in a patient with severe early-onset obesity, a novel heterozygous mutation in the MC4R gene was found in an exchange of Asp to Asn in the 90th amino acid residue located in the TM 2 domain (MC4R(D90N)). Mutations in the MC4R gene are the most frequent monogenic causes of severe obesity and are described as heterozygous with loss of function. We determine solution structures of the TM 2 domain of MC4R (MC4R(TM2)) and compared secondary structure of Asp90 mutant (MC4R(TM2-D90N)) in a micelle environment by nuclear magnetic resonance (NMR) spectroscopy. NMR structure shows that MC4R(TM2) forms a long alpha-helix with a kink at Gly98. Interestingly, the structure of MC4R(TM2-D90N) is similar to that of MC4R(TM2) based on data from CD and NMR spectrum. However, the thermal stability and homogeneity of MC4R(D90N) is quite different from those of MC4R. The structure from molecular modeling suggests that Asp90(2.50) plays a key role in allosteric sodium ion binding. Our data suggest that the sodium ion interaction of Asp90(2.50) in the allosteric pocket of MC4R is essential to its function, explaining the loss of function of the MC4R(D90N) mutant. (C) 2015 Elsevier B.V. All rights reserved.
机译:黑皮质素受体(MCRs)是具有七个跨膜(TM)域的G蛋白偶联受体(GPCR)1超家族的成员。其中,最近通过肥胖人类的遗传研究突出了黑皮质素4受体(MC4R)亚型。特别地,在患有严重的早发性肥胖症的患者中,在位于TM 2结构域(MC4R(D90N))的第90个氨基酸残基中Asp与Asn的交换中发现了MC4R基因中的新的杂合突变。 MC4R基因的突变是严重肥胖的最常见单基因原因,被描述为功能丧失的杂合子。我们确定解决方案结构的MC4R(MC4R(TM2))的TM 2域,并通过核磁共振(NMR)光谱比较了胶束环境中Asp90突变体(MC4R(TM2-D90N))的二级结构。 NMR结构显示MC4R(TM2)形成一个长的α-螺旋,在Gly98处有一个纽结。有趣的是,基于CD和NMR光谱数据,MC4R(TM2-D90N)的结构与MC4R(TM2)相似。但是,MC4R(D90N)的热稳定性和均质性与MC4R完全不同。分子建模的结构表明,Asp90(2.50)在变构钠离子结合中起关键作用。我们的数据表明,MC4R的变构口袋中Asp90(2.50)的钠离子相互作用对其功能至关重要,这说明了MC4R(D90N)突变体功能的丧失。 (C)2015 Elsevier B.V.保留所有权利。

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