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伴刀豆球蛋白A和C的半合成衍生物作为V型和P型ATP酶的抑制剂:结构-活性研究及光亲和探针的开发

Semisynthetic derivatives of concanamycin A and C, as inhibitors of V- and P-type ATPases: structure-activity investigations and developments of photoaffinity probes.

作者信息

Dröse S, Boddien C, Gassel M, Ingenhorst G, Zeeck A, Altendorf K

机构信息

Fachbereich Biologie/Chemie, Universität Osnabrück, Barbarastrasse 11, Arbeitsgruppe Mikrobiologie, D-49076 Osnabrück, Germany.

出版信息

Biochemistry. 2001 Mar 6;40(9):2816-25. doi: 10.1021/bi001759q.

Abstract

V-type ATPases are inhibited by the plecomacrolides bafilomycin and concanamycin, which exert their inhibitory potential at nanomolar concentrations. In addition, some P-type ATPases are inhibited at micromolar concentrations. We initiated intensive structure-activity investigations with semisynthetic concanamycin derivatives to approach the following two questions: (i) What is the pharmacophor, the structural key element, of the plecomacrolides that leads to their inhibitory potential against V- and P-type ATPases? (ii) Where is the binding site within these two different types of ATPases? In a first step, we examined where chemical modifications (O-acylations, substitutions, eliminations) could be placed without seriously affecting the inhibitory potential of the macrolides. In a second step, we used the knowledge of these structure-activity investigations to introduce traceable elements (fluorescent or radioactive) or nitrene-generating azido or carbene-generating diazirine-groups able to bind the inhibitors to their target covalently. These studies led finally to the synthesis of two photoaffinity probes that were used in labeling experiments with the purified plasma membrane V-type ATPase of Manduca sexta (described in a following paper, Huss, M., Gassel, M., Ingenhorst, G., Dröse, S., Zeeck, A., Altendorf, K., Wieczorek, H., manuscript submitted).

摘要

V型ATP酶受到普利霉素和 concanamycin 的抑制,它们在纳摩尔浓度下发挥抑制作用。此外,一些P型ATP酶在微摩尔浓度下受到抑制。我们用半合成的 concanamycin 衍生物开展了深入的构效关系研究,以解决以下两个问题:(i)普利霉素的药效基团,即导致其对V型和P型ATP酶具有抑制作用的结构关键要素是什么?(ii)这两种不同类型的ATP酶中的结合位点在哪里?第一步,我们研究了在何处进行化学修饰(O-酰化、取代、消除)而不会严重影响大环内酯类的抑制作用。第二步,我们利用这些构效关系研究的知识引入可追踪的元素(荧光或放射性)或能够将抑制剂与其靶点共价结合的生成氮烯的叠氮基或生成卡宾的二氮杂环丙烯基团。这些研究最终促成了两种光亲和探针的合成,它们被用于烟草天蛾纯化的质膜V型ATP酶的标记实验(后续论文 Huss, M., Gassel, M., Ingenhorst, G., Dröse, S., Zeeck, A., Altendorf, K., Wieczorek, H. 中有所描述,稿件已提交)。

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