Figler R A, Lindorfer M A, Graber S G, Garrison J C, Linden J
Department of Molecular Physiology, University of Virginia Health Sciences Center, Charlottesville, Virginia 22908, USA.
Biochemistry. 1997 Dec 23;36(51):16288-99. doi: 10.1021/bi972000q.
We have studied the interactions of purified A1 adenosine receptors and G proteins reconstituted into phospholipid vesicles to investigate how the betagamma composition of G protein heterotrimers influences coupling. Recombinant hexahistidine-tagged bovine A1 adenosine receptors were expressed in Sf9 cells and purified to homogeneity by sequential chromatography over heparin-sepharose, xanthine amino congener-agarose, and nickel-nitrilotriacetic acid columns. These receptors were reconstituted with pure recombinant G proteins of defined subunit composition. Receptor-G protein complexes containing alphai2 and beta1gamma2 or beta1gamma3 and stimulated with the agonist, (R)-phenylisopropyladenosine, exchange guanine nucleotide 2-3 times more rapidly than do complexes containing beta1gamma1. This difference is not overcome by increasing the concentration of betagamma subunits. Receptor-G protein complexes containing beta1gamma1 also bind less of the agonist, [125I]-iodoaminobenzyladenosine (125I-ABA), than do complexes containing beta1gamma3. Kinetic experiments show that 125I-ABA dissociates 2-fold more rapidly from receptor-G protein complexes containing beta1gamma1 than from complexes containing the other betagamma subunits. The affinity of the interaction between immobilized Galphai2 subunits and beta1gamma1 or beta1gamma2 measured with an optical biosensor in the absence of receptor is similar. Taken together, these data implicate the gamma-subunit in influencing the interaction between the A1 adenosine receptor and G proteins.
我们研究了纯化的A1腺苷受体与重组到磷脂囊泡中的G蛋白之间的相互作用,以探讨G蛋白异源三聚体的βγ组成如何影响偶联。重组的带有六组氨酸标签的牛A1腺苷受体在Sf9细胞中表达,并通过在肝素琼脂糖、黄嘌呤氨基类似物琼脂糖和镍-次氮基三乙酸柱上的连续层析纯化至同质。这些受体与具有确定亚基组成的纯重组G蛋白重组。含有αi2和β1γ2或β1γ3且用激动剂(R)-苯异丙基腺苷刺激的受体-G蛋白复合物,其鸟嘌呤核苷酸交换速度比含有β1γ1的复合物快2-3倍。这种差异不会因增加βγ亚基的浓度而被克服。含有β1γ1的受体-G蛋白复合物也比含有β1γ3的复合物结合更少的激动剂[125I]-碘氨基苄基腺苷(125I-ABA)。动力学实验表明,125I-ABA从含有β1γ1的受体-G蛋白复合物中解离的速度比从含有其他βγ亚基的复合物中快2倍。在没有受体的情况下,用光学生物传感器测量固定化的αi2亚基与β1γ1或β1γ2之间相互作用的亲和力相似。综上所述,这些数据表明γ亚基在影响A1腺苷受体与G蛋白之间的相互作用中起作用。