Asano Shinji, Yoshida Ayumi, Yashiro Hiroaki, Kobayashi Yusuke, Morisato Anna, Ogawa Haruo, Takeguchi Noriaki, Morii Magotoshi
Life Scientific Research Center, Faculty of Pharmaceutical Sciences, Toyama Medical & Pharmaceutical University, Toyama, Japan.
J Biol Chem. 2004 Apr 2;279(14):13968-75. doi: 10.1074/jbc.M308934200. Epub 2003 Dec 29.
2-Methyl-8-(phenylmethoxy)imidazo[1,2-a]pyridine-3-acetonitrile (SCH 28080) is a reversible inhibitor specific for the gastric proton pump. The inhibition pattern is competitive with K(+). Here we studied the binding sites of this inhibitor on the putative three-dimensional structure of the gastric proton pump alpha-subunit that was constructed by homology modeling based on the structure of sarcoplasmic reticulum Ca(2+) pump. Alanine and serine mutants of Tyr(801) located in the fifth transmembrane segment of the gastric proton pump alpha-subunit retained the (86)Rb transport and K(+)-dependent ATPase (K(+)-ATPase) activities. These mutants showed 60-80-times lower sensitivity to SCH 28080 than the wild type in the (86)Rb transport activity. The K(+)-ATPase activities of these mutants were not completely inhibited by SCH 28080. The sensitivity to SCH 28080 was dependent on the bulkiness of the side chain at this position. Therefore, the side chain of Tyr(801) is important for the interaction with this inhibitor. In the three-dimensional structure of the E(2) form (conformation with high affinity for K(+)) of the gastric proton pump, Tyr(801) faces a cavity surrounded by the first, fourth, fifth, sixth, and eighth transmembrane segments and fifth/sixth, seventh/eighth, and ninth/tenth loops. SCH 28080 can dock in this cavity. However, SCH 28080 cannot dock in the same location in the E(1) form (conformation with high affinity for proton) of the gastric proton pump due to the drastic rearrangement of the transmembrane helices between the E(1) and E(2) forms. These results support the idea that this cavity is the binding pocket of SCH 28080.
2-甲基-8-(苯甲氧基)咪唑并[1,2-a]吡啶-3-乙腈(SCH 28080)是一种对胃质子泵具有特异性的可逆抑制剂。其抑制模式与钾离子具有竞争性。在此,我们基于肌浆网钙离子泵的结构通过同源建模构建了胃质子泵α亚基的假定三维结构,并研究了该抑制剂在其上的结合位点。位于胃质子泵α亚基第五跨膜段的酪氨酸(Tyr)801的丙氨酸和丝氨酸突变体保留了铷-86转运和钾离子依赖性ATP酶(钾离子-ATP酶)活性。在铷-86转运活性方面,这些突变体对SCH 28080的敏感性比野生型低60至80倍。这些突变体的钾离子-ATP酶活性未被SCH 28080完全抑制。对SCH 28080的敏感性取决于该位置侧链的体积大小。因此,Tyr801的侧链对于与该抑制剂的相互作用很重要。在胃质子泵E2形式(对钾离子具有高亲和力的构象)的三维结构中,Tyr801面对一个由第一、第四、第五、第六和第八跨膜段以及第五/第六、第七/第八和第九/第十环包围的腔。SCH 28080可以停靠在这个腔内。然而,由于E1和E2形式之间跨膜螺旋的剧烈重排,SCH 28080无法停靠在胃质子泵E1形式(对质子具有高亲和力的构象)的相同位置。这些结果支持了这个腔是SCH 28080结合口袋的观点。