Kim Y S, Min J K, Kim D, Jung J
School of Agricultural Biotechnology, Seoul National University, Suwon 441-744, Korea.
J Biol Chem. 2001 Apr 6;276(14):10730-6. doi: 10.1074/jbc.M009416200. Epub 2001 Jan 11.
ABP(57) is an auxin-binding protein that possesses receptor function. In this study, a protocol for ABP(57) purification was developed on the basis of cross-reactivity shown between ABP(57) and antisera raised against bovine serum albumin, which enabled us to purify ABP(57) with a high yield and to further characterize it. ABP(57) activates plant plasma membrane H(+)-ATPase (PM H(+)-ATPase) via direct interaction. The binding of indole-3-acetic acid (IAA) to the primary binding site on ABP(57) caused a marked increase in the affinity of ABP(57) for PM H(+)-ATPase, which was accompanied by a change in ABP(57) conformation. Meanwhile, additional IAA binding to the secondary site on ABP(57) nullified the initial effect without inducing further conformational change. When ABP(57) with IAA occupying only the primary site interacted with PM H(+)-ATPase, no IAA could access the secondary site. These results suggest that IAA-induced biphasic alteration in the affinity of ABP(57) for PM H(+)-ATPase correlates with a bell-shaped dose response of the enzyme to IAA. There is also a possibility that, whereas the stimulation phase of the response is associated with a conformational change of ABP(57), the destimulation phase probably results from hindrance arising directly from the presence of IAA at the secondary site.
ABP(57)是一种具有受体功能的生长素结合蛋白。在本研究中,基于ABP(57)与抗牛血清白蛋白产生的抗血清之间显示的交叉反应性,开发了一种ABP(57)纯化方案,这使我们能够高产率地纯化ABP(57)并对其进行进一步表征。ABP(57)通过直接相互作用激活植物质膜H(+)-ATP酶(质膜H(+)-ATP酶)。吲哚-3-乙酸(IAA)与ABP(57)上的主要结合位点结合,导致ABP(57)对质膜H(+)-ATP酶的亲和力显著增加,同时ABP(57)构象发生变化。与此同时,额外的IAA与ABP(57)上的次要位点结合消除了初始效应,且未诱导进一步的构象变化。当仅占据主要位点的IAA与ABP(57)相互作用时,质膜H(+)-ATP酶,没有IAA能够进入次要位点。这些结果表明,IAA诱导的ABP(57)对质膜H(+)-ATP酶亲和力的双相变化与该酶对IAA的钟形剂量反应相关。也有可能,虽然反应的刺激阶段与ABP(57)的构象变化有关,但去刺激阶段可能是由于次要位点存在IAA直接产生的阻碍所致。