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由1023/SK&F 96022:一种新型(氢离子+钾离子)-ATP酶抑制剂的生物化学

By 1023/SK&F 96022: biochemistry of a novel (H+ + K+)-ATPase inhibitor.

作者信息

Simon W A, Keeling D J, Laing S M, Fallowfield C, Taylor A G

机构信息

Smith Kline & French Research Ltd, Welwyn, Herts, U.K.

出版信息

Biochem Pharmacol. 1990 Jun 1;39(11):1799-806. doi: 10.1016/0006-2952(90)90128-8.

Abstract

The mechanism by which the substituted benzimidazole sulphoxide BY 1023/SK&F 96022 inhibited the (H+ + K+)-ATPase, the enzyme responsible for hydrogen ion secretion in the stomach, was studied in a variety of in vitro preparations. In gastric preparations that were capable of active hydrogen ion transport with consequent lumenal acidification, BY 1023/SK&F 96022 inhibited with high potency and in a time-dependent manner consistent with the acid-induced conversion of the parent benzimidazole sulphoxide to a covalent inhibitor (cyclic sulphenamide). The following IC50 values were obtained for the inhibition of aminopyrine accumulation: intact gastric glands stimulated with 1 mM dibutyryl cAMP, 1.0 microM; permeabilized gastric glands stimulated with 5 mM ATP, 0.42 microM; intact gastric vesicles stimulated with 150 mM KCl, 9 microM valinomycin and 2 mM MgATP, 3.5 microM. In a preparation that could not generate pH gradients, lyophilized gastric vesicles at pH 7.4, BY 1023/SK&F 96022 inhibited K(+)-stimulated ATPase activity with relatively low potency, 70 microM, indicating its good chemical stability at neutral pH. As assessed by ATPase inhibition, this stability was three times greater than that of omeprazole. Inhibition by BY 1023/SK&F 96022 was not reversed by dilution in either permeabilized gastric glands or intact gastric vesicles. Inhibition could, however, be completely reversed by subsequent incubation with 20 mM beta-mercaptoethanol (intact gastric glands) or 100 mM dithiothreitol (intact gastric vesicles) suggesting a disulphide link between inhibitor and enzyme. The concentration of glutathione needed to protect against inhibition by BY 1023/SK&F 96022 was 10,000 times higher in intact, compared with lyophilized, gastric vesicles indicating an interaction with the lumenal (extra-cellular) face of the (H+ + K+)-ATPase. BY 1023/SK&F 96022 and omeprazole were also found to inhibit acidification in purified kidney lysosomes with IC50 values of 194 and 75 microM, respectively. Protection by 10 microM glutathione suggested that this did not result from intralysosomal activation of these inhibitors. Thus, BY 1023/SK&F 96022 has the combined properties of good chemical stability at neutral pH and effective conversion to the cyclic sulphenamide at acidic pH. In this way the activation to the cyclic sulphenamide may be optimally restricted to the parietal cell canaliculus.

摘要

在多种体外制剂中研究了取代苯并咪唑亚砜BY 1023/SK&F 96022抑制(H⁺+K⁺)-ATP酶(负责胃中氢离子分泌的酶)的机制。在能够进行主动氢离子转运并导致管腔酸化的胃制剂中,BY 1023/SK&F 96022具有高效抑制作用,且呈时间依赖性,这与母体苯并咪唑亚砜酸诱导转化为共价抑制剂(环状亚磺酰胺)一致。在抑制氨基比林蓄积方面获得了以下半数抑制浓度(IC50)值:用1 mM二丁酰环磷腺苷(cAMP)刺激的完整胃腺,1.0 μM;用5 mM三磷酸腺苷(ATP)刺激的透化胃腺,0.42 μM;用150 mM氯化钾、9 μM缬氨霉素和2 mM镁三磷酸腺苷(MgATP)刺激的完整胃小泡,3.5 μM。在不能产生pH梯度的制剂(pH 7.4的冻干胃小泡)中,BY 1023/SK&F 96022以相对较低的效力(70 μM)抑制钾离子刺激的ATP酶活性,表明其在中性pH下具有良好的化学稳定性。通过ATP酶抑制评估,这种稳定性比奥美拉唑大三倍。在透化胃腺或完整胃小泡中,稀释均不能逆转BY 1023/SK&F 96022的抑制作用。然而,随后用20 mMβ-巯基乙醇(完整胃腺)或100 mM二硫苏糖醇(完整胃小泡)孵育可完全逆转抑制作用,提示抑制剂与酶之间存在二硫键连接。与冻干胃小泡相比,完整胃小泡中防止BY 1023/SK&F 96022抑制所需的谷胱甘肽浓度高10000倍,表明其与(H⁺+K⁺)-ATP酶的管腔(细胞外)面相互作用。还发现BY 1023/SK&F 96022和奥美拉唑分别以194和75 μM的IC50值抑制纯化肾溶酶体中的酸化。10 μM谷胱甘肽的保护作用表明这不是这些抑制剂在溶酶体内活化所致。因此,BY 1023/SK&F 96022具有在中性pH下良好化学稳定性以及在酸性pH下有效转化为环状亚磺酰胺的综合特性。通过这种方式,向环状亚磺酰胺的活化可能最佳地局限于壁细胞小管。

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