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作为鉴定 Na+,K+-ATP 酶结合部位细胞外入口的工具的强心甾类化合物的自旋标记衍生物。

Spin-labeled derivatives of cardiotonic steroids as tools for characterization of the extracellular entrance to the binding site on Na ,K -ATPase.

机构信息

Guangdong Province Key Laboratory of Pharmacodynamic Constituents of TCM and New Drugs Research, College of Pharmacy, Jinan University, Guangzhou City, Guangdong Province, China.

Department of Biomedicine, Aarhus University, Denmark.

出版信息

FEBS J. 2018 Jun;285(12):2292-2305. doi: 10.1111/febs.14480. Epub 2018 May 8.

Abstract

The information obtained from crystallized complexes of the Na ,K -ATPase with cardiotonic steroids (CTS) is not sufficient to explain differences in the inhibitory properties of CTS such as stereoselectivity of CTS binding or effect of glycosylation on the preference to enzyme isoforms. The uncertainty is related to the spatial organization of the hydrophilic cavity at the entrance of the CTS-binding site. Therefore, there is a need to supplement the crystallographic description with data obtained in aqueous solution, where molecules have significant degree of flexibility. This work addresses the applicability of the electron paramagnetic resonance (EPR) method for the purpose. We have designed and synthesized spin-labeled compounds based on the cinobufagin steroid core. The length of the spacer arms between the steroid core and the nitroxide group determines the position of the reporting group (N-O) confined to the binding site. High affinity to Na ,K -ATPase is inferred from their ability to inhibit enzymatic activity. The differences between the EPR spectra in the absence and presence of high ouabain concentrations identify the signature peaks originating from the fraction of the spin labels bound within the ouabain site. The degree of perturbations of the EPR spectra depends on the length of the spacer arm. Docking of the compounds into the CTS site suggests which elements of the protein structure might be responsible for interference with the spin label (e.g., steric clashes or immobilization). Thus, the method is suitable for gathering information on the cavity leading to the CTS-binding site in Na ,K -ATPase in all conformations with high affinity to CTS.

摘要

从 Na,K -ATPase 与强心甾体 (CTS) 的结晶复合物中获得的信息不足以解释 CTS 的抑制特性差异,例如 CTS 结合的立体选择性或糖基化对酶同工型偏好的影响。这种不确定性与 CTS 结合位点入口处亲水性腔的空间组织有关。因此,需要用在水溶液中获得的数据来补充晶体学描述,在水溶液中,分子具有很大的柔韧性。这项工作旨在探讨电子顺磁共振 (EPR) 方法的适用性。我们设计并合成了基于华蟾酥毒基甾体核心的自旋标记化合物。甾体核心和硝酮基团之间间隔臂的长度决定了报告基团 (N-O) 的位置,该基团被限制在结合部位。它们能够抑制酶活性,这表明它们对 Na,K -ATPase 具有高亲和力。在没有和存在高哇巴因浓度的情况下,EPR 光谱的差异确定了源自结合部位内结合的部分自旋标记的特征峰。EPR 光谱的扰动程度取决于间隔臂的长度。将化合物对接入 CTS 部位表明,哪些蛋白质结构元素可能会干扰自旋标记(例如,空间位阻或固定化)。因此,该方法适用于在与 CTS 具有高亲和力的所有构象中,收集有关 Na,K -ATPase 中通向 CTS 结合部位的腔的信息。

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