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首页> 外文期刊>The Journal of biological chemistry >Structure of the Human Angiotensin II Type 1 (AT1) Receptor Bound to Angiotensin II from Multiple Chemoselective Photoprobe Contacts Reveals a Unique Peptide Binding Mode
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Structure of the Human Angiotensin II Type 1 (AT1) Receptor Bound to Angiotensin II from Multiple Chemoselective Photoprobe Contacts Reveals a Unique Peptide Binding Mode

机译:从多个化学选择性光调节触点与血管紧张素II结合的人血管紧张素II型1(AT1)受体的结构显示出独特的肽结合模式

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Breakthroughs in G protein-coupled receptor structure determination based on crystallography have been mainly obtained from receptors occupied in their transmembrane domain core by low molecular weight ligands, and we have only recently begun to elucidate how the extracellular surface of G protein-coupled receptors (GPCRs) allows for the binding of larger peptide molecules. In the present study, we used a unique chemoselective photoaffinity labeling strategy, the methionine proximity assay, to directly identify at physiological conditions a total of 38 discrete ligand/receptor contact residues that form the extracellular peptide-binding site of an activated GPCR, the angiotensin II type 1 receptor. This experimental data set was used in homology modeling to guide the positioning of the angiotensin II (AngII) peptide within several GPCR crystal structure templates. We found that the CXC chemokine receptor type 4 accommodated the results better than the other templates evaluated; ligand/receptor contact residues were spatially grouped into defined interaction clusters with AngII. In the resulting receptor structure, a β-hairpin fold in extracellular loop 2 in conjunction with two extracellular disulfide bridges appeared to open and shape the entrance of the ligand-binding site. The bound AngII adopted a somewhat vertical binding mode, allowing concomitant contacts across the extracellular surface and deep within the transmembrane domain core of the receptor. We propose that such a dualistic nature of GPCR interaction could be well suited for diffusible linear peptide ligands and a common feature of other peptidergic class A GPCRs.
机译:基于晶体学的G蛋白偶联受体结构测定的突破主要由低分子量配体从其跨膜结构域核心占据的受体中获得,并且我们最近仅开始阐明G蛋白偶联受体的细胞外表面(GPCR )允许结合较大的肽分子。在本研究中,我们使用了独特的化学选择性光边贴标标记策略,甲硫氨酸接近测定,直接鉴定在生理条件下,总共38个离散配体/受体接触残留物,其形成活化的GPCR的细胞外肽结合位点,即血管紧张素II型1受体。该实验数据集用于同源性建模,以引导血管紧张素II(Angii)肽在几种GPCR晶体结构模板内定位。我们发现CXC趋化因子受体类型4容纳比评估的其他模板更好的结果;配体/受体接触残留物在用Angii被空间分组成定义的相互作用簇。在得到的受体结构中,与两个细胞外二硫桥结合的细胞外环2中的β-发夹折叠似乎打开并塑造配体结合位点的入口。结合的Angii采用了稍微垂直的结合模式,允许通过细胞外表面和受体的跨膜结构域核心的伴随圆周偶联。我们提出了GPCR相互作用的这种二元性质可以非常适合于扩散的线性肽配体和其他Peptimergic A类GPCR的共同特征。

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