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不同化学结构的药物与钙调蛋白的同时结合:晶体学和光谱学研究

Simultaneous binding of drugs with different chemical structures to Ca2+-calmodulin: crystallographic and spectroscopic studies.

作者信息

Vertessy B G, Harmat V, Böcskei Z, Náray-Szabó G, Orosz F, Ovádi J

机构信息

Institute of Enzymology, Biological Research Center, Hungarian Academy of Sciences, Budapest.

出版信息

Biochemistry. 1998 Nov 3;37(44):15300-10. doi: 10.1021/bi980795a.

Abstract

The modulatory action of Ca2+-calmodulin on multiple targets is inhibited by trifluoperazine, which competes with target proteins for calmodulin binding. The structure of calmodulin crystallized with two trifluoperazine molecules is determined by X-ray crystallography at 2.74 A resolution. The X-ray data together with the characteristic and distinct signals obtained by circular dichroism in solution allowed us to identify the binding domains as well as the order of the binding of two trifluoperazine molecules to calmodulin. Accordingly, the binding of trifluperazine to the C-terminal hydrophobic pocket is followed by the interaction of the second drug molecule with an interdomain site. Recently, we demonstrated that the two bisindole derivatives, vinblastine and KAR-2 [3"-(beta-chloroethyl)-2",4"-dioxo-3, 5"-spirooxazolidino-4-deacetoxyvinblastine], interact with calmodulin with comparable affinity; however, they display different functional effects [Orosz et al. (1997) British J. Pharmacol. 121, 955-962]. The structural basis responsible for these effects were investigated by circular dichroism and fluorescence spectroscopy. The data provide evidence that calmodulin can simultaneously accommodate trifluoperazine and KAR-2 as well as vinblastine and KAR-2, but not trifluoperazine and vinblastine. The combination of the binding and structural data suggests that distinct binding sites exist on calmodulin for vinblastine and KAR-2 which correspond, at least partly, to that of trifluoperazine at the C-terminal hydrophobic pocket and at an interdomain site, respectively. This structural arrangement can explain why these drugs display different anticalmodulin activities. Calmodulin complexed with melittin is also able to bind two trifluoperazine molecules, the binding of which appears to be cooperative. Results obtained with intact and proteolytically cleaved calmodulin reveal that the central linker region of the protein is indispensable for simultanous interactions with two molecules of either identical or different ligands.

摘要

三氟拉嗪可抑制Ca2+ -钙调蛋白对多个靶点的调节作用,它与靶点蛋白竞争钙调蛋白结合位点。通过X射线晶体学在2.74 Å分辨率下确定了与两个三氟拉嗪分子结晶的钙调蛋白的结构。X射线数据以及溶液中圆二色性获得的特征性和独特信号使我们能够确定结合结构域以及两个三氟拉嗪分子与钙调蛋白结合的顺序。因此,三氟拉嗪与C末端疏水口袋结合后,第二个药物分子与结构域间位点相互作用。最近,我们证明了两种双吲哚衍生物长春碱和KAR-2 [3"-(β-氯乙基)-2",4"-二氧代-3, 5"-螺恶唑烷酮-4-脱乙酰氧基长春碱] 以相当的亲和力与钙调蛋白相互作用;然而,它们表现出不同的功能效应 [奥罗斯等 (1997年) 《英国药理学杂志》121, 955 - 962]。通过圆二色性和荧光光谱研究了导致这些效应的结构基础。数据表明钙调蛋白可以同时容纳三氟拉嗪和KAR-2以及长春碱和KAR-2,但不能同时容纳三氟拉嗪和长春碱。结合数据和结构数据表明,钙调蛋白上存在长春碱和KAR-2的不同结合位点,它们至少部分分别对应于三氟拉嗪在C末端疏水口袋和结构域间位点的结合位点。这种结构安排可以解释为什么这些药物表现出不同的抗钙调蛋白活性。与蜂毒素复合 的钙调蛋白也能够结合两个三氟拉嗪分子,其结合似乎具有协同性。完整的和经蛋白酶切割的钙调蛋白的实验结果表明,该蛋白的中央连接区对于与两个相同或不同配体分子的同时相互作用是必不可少的。

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