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钙和镉对钙调蛋白激活作用的¹H-NMR比较

A 1H-NMR comparison of calmodulin activation by calcium and by cadmium.

作者信息

Akiyama K, Sutoo D, Reid D G

机构信息

Institute of Medical Science, University of Tsukuba, Ibaraki, Japan.

出版信息

Jpn J Pharmacol. 1990 Jul;53(3):393-401. doi: 10.1254/jjp.53.393.

Abstract

Our previous reports based on pharmacological and histochemical evidence suggest that calcium and cadmium can both activate calmodulin (CaM)-dependent functions. The study reported here was carried out to explain these observations in molecular terms, using 400 MHz 1H-NMR. Changes in the spectrum of bovine brain CaM induced by 0 to 4 molar equivalents of calcium and cadmium were practically the same. In particular, the chemical shifts and line shape of signals due to Tyr-138, Phe-65, Phe-89 and Tml-115 were similarly affected by either ion. In addition, the effects of N-(6-aminohexyl)-5-chloro-1-naphthalene-sulfonamide (W-7, a CaM antagonist) on the phenylalanine aromatic regions, methionine methyl regions and high-field methyl regions of the spectra of both calcium- and cadmium-saturated proteins were practically identical. The effect of W-7 on calcium- and cadmium-saturated CaM was reflected in changes in the signals of Ile-27, Phe-68, Phe-92, Ile-100 and Val-142, as well as Met-71, Met-72, Met-76, Phe-89 and Phe-141. The results show that cadmium binds to all calcium-binding sites of CaM, and induces conformational changes that are as extensive as those brought about by calcium. W-7 also inhibits CaM activation by calcium and cadmium. Combined with our previous toxicological evidence, these results suggest that cadmium binds indiscriminately to CaM and that subsequent activation or modulation of CaM-dependent functions is confused as a result. This may be a mechanism contributing to cadmium poisoning.

摘要

我们之前基于药理学和组织化学证据的报告表明,钙和镉都能激活钙调蛋白(CaM)依赖性功能。本文所报告的研究旨在从分子层面解释这些观察结果,采用了400兆赫的1H - NMR技术。由0至4摩尔当量的钙和镉诱导的牛脑CaM光谱变化几乎相同。特别是,Tyr - 138、Phe - 65、Phe - 89和Tml - 115所产生信号的化学位移和线形受到这两种离子的类似影响。此外,N -(6 - 氨基己基)- 5 - 氯 - 1 - 萘磺酰胺(W - 7,一种CaM拮抗剂)对钙饱和蛋白和镉饱和蛋白光谱中苯丙氨酸芳香区、甲硫氨酸甲基区和高场甲基区的影响几乎相同。W - 7对钙饱和和镉饱和CaM的影响反映在Ile - 27、Phe - 68、Phe - 92、Ile - 100和Val - 142以及Met - 71、Met - 72、Met - 76、Phe - 89和Phe - 141的信号变化上。结果表明,镉与CaM的所有钙结合位点结合,并诱导与钙所引起的构象变化一样广泛的构象变化。W - 7也抑制钙和镉对CaM的激活。结合我们之前的毒理学证据,这些结果表明镉无差别地与CaM结合,随后CaM依赖性功能的激活或调节因此而紊乱。这可能是导致镉中毒的一种机制。

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