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发现一种新型抗肿瘤苯并内酯烯酰胺类化合物,其可选择性抑制哺乳动物液泡型(H+)-ATP酶。

Discovery of a novel antitumor benzolactone enamide class that selectively inhibits mammalian vacuolar-type (H+)-atpases.

作者信息

Boyd M R, Farina C, Belfiore P, Gagliardi S, Kim J W, Hayakawa Y, Beutler J A, McKee T C, Bowman B J, Bowman E J

机构信息

Laboratory of Natural Products, Division of Basic Sciences, National Cancer Institute, Bldg. 1052, Rm. 121, Frederick, MD 21702-1201, USA.

出版信息

J Pharmacol Exp Ther. 2001 Apr;297(1):114-20.

Abstract

A series of naturally occurring compounds reported recently by multiple laboratories defines a new small-molecule class sharing a unique benzolactone enamide core structure and diverse biological actions, including inhibition of growth of tumor cells and oncogene-transformed cell lines. Here we show that representative members of this class, including salicylihalamide A, lobatamides A-F, and oximidines I and II inhibit mammalian vacuolar-type (H+)-ATPases (V-ATPases) with unprecedented selectivity. Data derived from the NCI 60-cell antitumor screen critically predicted the V-ATPase molecular target, while specific biochemical assays provided confirmation and further illumination. The compounds potently blocked representative V-ATPases from human kidney, liver, and osteoclastic giant-cell tumor of bone but were essentially inactive against V-ATPases of Neurospora crassa and Saccharomyces cerevisiae and other membrane ATPases. Essential regulation of pH in cytoplasmic, intraorganellar, and local extracellular spaces is provided by V-ATPases, which are ubiquitously distributed among eukaryotic cells and tissues. The most potent and selective V-ATPase inhibitors heretofore known were the bafilomycins and concanamycins, which do not discriminate between mammalian and nonmammalian V-ATPases. Numerous physiological processes are mediated by V-ATPases, and aberrant V-ATPase functions are implicated in many different human diseases. Previous efforts to develop therapeutic pharmacological modulators of V-ATPases have been frustrated by a lack of synthetically tractable and biologically selective leads. Therefore, availability of the unique benzolactone enamide inhibitor class may enable further elucidation of functional and architectural features of mammalian versus nonmammalian V-ATPase isoforms and provide new opportunities for targeting V-ATPase-mediated processes implicated in diverse pathophysiological phenomena, including cancer.

摘要

多个实验室最近报道的一系列天然存在的化合物定义了一类新的小分子,它们具有独特的苯并内酯烯酰胺核心结构和多种生物学作用,包括抑制肿瘤细胞和癌基因转化细胞系的生长。在此我们表明,这类化合物的代表性成员,包括水杨酰卤酰胺A、洛巴酰胺A - F以及肟咪定I和II,以前所未有的选择性抑制哺乳动物液泡型(H⁺)-ATP酶(V-ATP酶)。来自美国国立癌症研究所60细胞抗肿瘤筛选的数据准确地预测了V-ATP酶分子靶点,而特定的生化分析提供了证实和进一步的阐释。这些化合物能有效阻断来自人肾、肝以及骨破骨细胞巨细胞瘤的代表性V-ATP酶,但对粗糙脉孢菌和酿酒酵母的V-ATP酶以及其他膜ATP酶基本无活性。V-ATP酶在真核细胞和组织中普遍分布,它对细胞质、细胞器内和局部细胞外空间的pH起着至关重要的调节作用。迄今为止已知的最有效和最具选择性的V-ATP酶抑制剂是巴弗洛霉素和 concanamycin,它们无法区分哺乳动物和非哺乳动物的V-ATP酶。许多生理过程由V-ATP酶介导,V-ATP酶功能异常与许多不同的人类疾病有关。先前开发V-ATP酶治疗性药理调节剂的努力因缺乏易于合成且具有生物学选择性的先导化合物而受挫。因此,独特的苯并内酯烯酰胺抑制剂类的出现可能有助于进一步阐明哺乳动物与非哺乳动物V-ATP酶同工型的功能和结构特征,并为靶向涉及多种病理生理现象(包括癌症)的V-ATP酶介导的过程提供新的机会。

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