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人缓激肽-缓激肽B2受体复合物的理论研究

Theoretical study of the human bradykinin-bradykinin B2 receptor complex.

作者信息

Gieldon Artur, Lopez Jakob J, Glaubitz Clemens, Schwalbe Harald

机构信息

Johann Wolfgang Goethe-Universität, Institute for Organic Chemistry and Chemical Biology, Center for Biomolecular Magnetic Resonance, Frankfurt Germany.

出版信息

Chembiochem. 2008 Oct 13;9(15):2487-97. doi: 10.1002/cbic.200800324.

Abstract

The interaction of bradykinin (BK) with the bradykinin B2 receptor (B2R) was analyzed by using molecular modeling (MM) and molecular dynamics (MD) simulations. A homology model for B2R has been generated and the recently determined receptor-bound solid-state NMR spectroscopic structure of BK (Lopez et al., Angew. Chem. 2008, 120, 1692-1695; Angew. Chem. Int. Ed. 2008, 47, 1668-1671) has been modeled into the binding pocket of the receptor to probe the putative ligand-receptor interface. The experimental hormone structure fitted well into the binding pocket of the receptor model and remained stable during the MD simulation. We propose a parallel orientation of the side chains for Arg1 and Arg9 in BK that is bound to B2R. The MD simulation study also allows the conformational changes that lead to the activated form of B2R to be analyzed. The hydrogen bond between N140 (3.35) and W283 (6.48) is the key interaction that keeps the receptor in its inactive form. This hydrogen bond is broken during the MD simulation due to rotation of transmembrane helix 3 (TM3) and is replaced by a new hydrogen bond between W283 (6.48) and N324 (7.45). We propose that this interaction is specific for the activated form of the bradykinin B2 receptor. Additionally, we compared and discussed our putative model in the context of the structural model of the partially activated rhodopsin (Rh*) and with the known biochemical and structural data.

摘要

通过分子建模(MM)和分子动力学(MD)模拟分析了缓激肽(BK)与缓激肽B2受体(B2R)的相互作用。已生成B2R的同源模型,并将最近确定的与受体结合的BK固态核磁共振光谱结构(Lopez等人,《德国应用化学》,2008年,120卷,1692 - 1695页;《德国应用化学国际版》,2008年,47卷,1668 - 1671页)建模到受体的结合口袋中,以探究假定的配体 - 受体界面。实验性的激素结构很好地拟合到受体模型的结合口袋中,并且在MD模拟过程中保持稳定。我们提出与B2R结合的BK中Arg1和Arg9侧链的平行取向。MD模拟研究还允许分析导致B2R活化形式的构象变化。N140(3.35)和W283(6.48)之间的氢键是使受体保持非活性形式的关键相互作用。在MD模拟过程中,由于跨膜螺旋3(TM3)的旋转,该氢键断裂,并被W283(6.48)和N324(7.45)之间的新氢键取代。我们提出这种相互作用是缓激肽B2受体活化形式所特有的。此外,我们在部分活化的视紫红质(Rh*)的结构模型背景下以及与已知的生化和结构数据进行了比较和讨论我们的假定模型。

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