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本文引用的文献

1
Small-molecule agonists for the thyrotropin receptor stimulate thyroid function in human thyrocytes and mice.促甲状腺激素受体的小分子激动剂可刺激人甲状腺细胞和小鼠的甲状腺功能。
Proc Natl Acad Sci U S A. 2009 Jul 28;106(30):12471-6. doi: 10.1073/pnas.0904506106. Epub 2009 Jul 10.
2
The structure and function of G-protein-coupled receptors.G蛋白偶联受体的结构与功能。
Nature. 2009 May 21;459(7245):356-63. doi: 10.1038/nature08144.
3
Comparative analysis of GPCR crystal structures.G蛋白偶联受体(GPCR)晶体结构的比较分析。
Photochem Photobiol. 2009 Mar-Apr;85(2):425-30. doi: 10.1111/j.1751-1097.2008.00516.x. Epub 2009 Jan 19.
4
Thyrotropin and homologous glycoprotein hormone receptors: structural and functional aspects of extracellular signaling mechanisms.促甲状腺激素及同源糖蛋白激素受体:细胞外信号传导机制的结构与功能方面
Endocr Rev. 2009 Apr;30(2):133-51. doi: 10.1210/er.2008-0044. Epub 2009 Jan 27.
5
Discovery of new GPCR biology: one receptor structure at a time.新G蛋白偶联受体生物学的发现:一次解析一个受体结构。
Structure. 2009 Jan 14;17(1):8-14. doi: 10.1016/j.str.2008.12.003.
6
Two arginine-glutamate ionic locks near the extracellular surface of FFAR1 gate receptor activation.游离脂肪酸受体1(FFAR1)胞外表面附近的两个精氨酸-谷氨酸离子锁控制受体激活。
J Biol Chem. 2009 Feb 6;284(6):3529-36. doi: 10.1074/jbc.M806987200. Epub 2008 Dec 8.
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Molecular and structural effects of inverse agonistic mutations on signaling of the thyrotropin receptor--a basally active GPCR.反向激动剂突变对促甲状腺激素受体信号传导的分子和结构影响——一种基础活性G蛋白偶联受体
Cell Mol Life Sci. 2008 Nov;65(22):3664-76. doi: 10.1007/s00018-008-8450-2.
8
A low-molecular-weight antagonist for the human thyrotropin receptor with therapeutic potential for hyperthyroidism.一种对人促甲状腺激素受体具有低分子量拮抗作用且对甲状腺功能亢进症有治疗潜力的物质。
Endocrinology. 2008 Dec;149(12):5945-50. doi: 10.1210/en.2008-0836. Epub 2008 Jul 31.
9
Crystal structure of the ligand-free G-protein-coupled receptor opsin.无配体G蛋白偶联受体视蛋白的晶体结构。
Nature. 2008 Jul 10;454(7201):183-7. doi: 10.1038/nature07063. Epub 2008 Jun 18.
10
G protein-coupled receptors of the hypothalamic-pituitary-gonadal axis: a case for Gnrh, LH, FSH, and GPR54 receptor ligands.下丘脑-垂体-性腺轴的G蛋白偶联受体:Gnrh、LH、FSH和GPR54受体配体的情况
Med Res Rev. 2008 Nov;28(6):975-1011. doi: 10.1002/med.20129.

信号敏感氨基酸环绕促甲状腺激素受体的变构配体结合位点。

Signaling-sensitive amino acids surround the allosteric ligand binding site of the thyrotropin receptor.

机构信息

Leibniz-Institut für Molekulare Pharmakologie, Robert-Rössle-Str. 10, D-13125 Berlin, Germany.

出版信息

FASEB J. 2010 Jul;24(7):2347-54. doi: 10.1096/fj.09-149146. Epub 2010 Feb 23.

DOI:10.1096/fj.09-149146
PMID:20179143
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3230523/
Abstract

The thyrotropin receptor [thyroid-stimulating hormone receptor (TSHR)], a G-protein-coupled receptor (GPCR), is endogenously activated by thyrotropin, which binds to the extracellular region of the receptor. We previously identified a low-molecular-weight (LMW) agonist of the TSHR and predicted its allosteric binding pocket within the receptor's transmembrane domain. Because binding of the LMW agonist probably disrupts interactions or leads to formation of new interactions among amino acid residues surrounding the pocket, we tested whether mutation of residues at these positions would lead to constitutive signaling activity. Guided by molecular modeling, we performed site-directed mutagenesis of 24 amino acids in this spatial region, followed by functional characterization of the mutant receptors in terms of expression and signaling, measured as cAMP accumulation. We found that mutations V421I, Y466A, T501A, L587V, M637C, M637W, S641A, Y643F, L645V, and Y667A located in several helices exhibit constitutive activity. Of note is mutation M637W at position 6.48 in transmembrane helix 6, which has a significant effect on the interaction of the receptor with the LMW agonist. In summary, we found that a high proportion of residues in several helices surrounding the allosteric binding site of LMW ligands in the TSHR when mutated lead to constitutively active receptors. Our findings of signaling-sensitive residues in this region of the transmembrane bundle may be of general importance as this domain appears to be evolutionarily retained among GPCRs.

摘要

促甲状腺素受体(TSHR)是一种 G 蛋白偶联受体(GPCR),可被促甲状腺素(TSH)内源性激活,后者与受体的细胞外区域结合。我们之前鉴定了 TSHR 的一种低分子量(LMW)激动剂,并预测了其在受体跨膜域内的变构结合口袋。由于 LMW 激动剂的结合可能破坏口袋周围氨基酸残基之间的相互作用或导致形成新的相互作用,我们测试了这些位置的残基突变是否会导致组成型信号转导活性。受分子建模指导,我们对该空间区域的 24 个氨基酸进行了定点突变,然后根据 cAMP 积累来测定突变受体的表达和信号转导功能。我们发现,位于几个螺旋中的 V421I、Y466A、T501A、L587V、M637C、M637W、S641A、Y643F、L645V 和 Y667A 突变表现出组成型活性。值得注意的是,位于跨膜 6 螺旋 6.48 位的 M637W 突变对受体与 LMW 激动剂的相互作用有重大影响。总之,我们发现,当几个螺旋中的多个位置发生突变时,TSHR 中 LMW 配体变构结合位点周围的大量残基会导致组成型激活的受体。我们在跨膜束这个区域发现的信号敏感残基可能具有普遍意义,因为这个结构域似乎在 GPCR 中是进化保守的。