Raimondi Francesco, Seeber Michele, Benedetti Pier G De, Fanelli Francesca
Dulbecco Telethon Institute (DTI), and Department of Chemistry, University of Modena and Reggio Emilia, via Campi 183, 41100 Modena, Italy.
J Am Chem Soc. 2008 Apr 2;130(13):4310-25. doi: 10.1021/ja077268b. Epub 2008 Mar 12.
This study represents the first attempt to couple, by computational experiments, the mechanisms of intramolecular and intermolecular communication concerning a guanidine nucleotide exchange factor (GEF), the thromboxane A2 receptor (TXA2R), and the cognate G protein (Gq) in its heterotrimeric GDP-bound state. Two-way pathways mediate the communication between the receptor-G protein interface and both the agonist binding site of the receptor and the nucleotide binding site of the G protein. The increase in solvent accessibility in the neighborhoods of the highly conserved E/DRY receptor motif, in response to agonist binding, is instrumental in favoring the penetration of the C-terminus of Gqalpha in between the cytosolic ends of H3, H5, and H6. The arginine of the E/DRY motif is predicted to be an important mediator of the intramolecular and intermolecular communication involving the TXA2R. The receptor-G protein interface is predicted to involve multiple regions from the receptor and the G protein alpha-subunit. However, receptor contacts with the C-terminus of the alpha5-helix seem to be the major players in the receptor-catalyzed motion of the alpha-helical domain with respect to the Ras-like domain and in the formation of a nucleotide exit route in between the alphaF-helix and beta6/alpha5 loop of Gqalpha. The inferences from this study are of wide interest, as they are expected to apply to the whole rhodopsin family, given also the considerable G protein promiscuity.
本研究首次尝试通过计算实验,将鸟苷酸交换因子(GEF)、血栓素A2受体(TXA2R)以及处于异三聚体GDP结合状态的同源G蛋白(Gq)的分子内和分子间通讯机制联系起来。双向通路介导受体-G蛋白界面与受体的激动剂结合位点以及G蛋白的核苷酸结合位点之间的通讯。响应激动剂结合,高度保守的E/DRY受体基序附近溶剂可及性的增加,有助于促进Gqα的C末端插入H3、H5和H6的胞质端之间。E/DRY基序中的精氨酸预计是涉及TXA2R的分子内和分子间通讯的重要介导者。预计受体-G蛋白界面涉及来自受体和G蛋白α亚基的多个区域。然而,受体与α5螺旋C末端的接触似乎是受体催化α螺旋结构域相对于Ras样结构域运动以及在Gqα的αF螺旋和β6/α5环之间形成核苷酸出口途径的主要因素。鉴于G蛋白的相当大的通用性,本研究的推论具有广泛的意义,因为它们有望应用于整个视紫红质家族。