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激素和生长因子刺激的NADH氧化酶

Hormone- and growth factor-stimulated NADH oxidase.

作者信息

Morré D J

机构信息

Department of Medicinal Chemistry and Pharmacognosy, Purdue University, West Lafayette, Indiana 47907.

出版信息

J Bioenerg Biomembr. 1994 Aug;26(4):421-33. doi: 10.1007/BF00762783.

Abstract

An NADH oxidase activity of animal and plant plasma membrane is described that is stimulated by hormones and growth factors. In plasma membranes of cancer cells and tissues, the activity appears to be constitutively activated and no longer hormone responsive. With drugs that inhibit the activity, cells are unable to grow although growth inhibition may be more related to a failure of the cells to enlarge than to a direct inhibition of mitosis. The hormone-stimulated activity in plasma membranes of plants and the constitutively activated NADH oxidase in tumor cell plasma membranes is inhibited by thiol reagents whereas the basal activity is not. These findings point to a thiol involvement in the action of the activated form of the oxidase. NADH oxidase oxidation by Golgi apparatus of rat liver is inhibited by brefeldin A plus GDP. Brefeldin A is a macrolide antibiotic inhibitor of membrane trafficking. A model is presented where the NADH oxidase functions as a thiol-disulfide oxidoreductase activity involved in the formation and breakage of disulfide bonds. The thiol-disulfide interchange is postulated as being associated with physical membrane displacement as encountered in cell enlargement or in vesicle budding. The model, although speculative, does provide a basis for further experimentation to probe a potential function for this enzyme system which, under certain conditions, exhibits a hormone- and growth factor-stimulated oxidation of NADH.

摘要

本文描述了动植物质膜中的一种NADH氧化酶活性,该活性受激素和生长因子刺激。在癌细胞和组织的质膜中,该活性似乎组成性激活,不再对激素产生反应。使用抑制该活性的药物时,细胞无法生长,尽管生长抑制可能更多地与细胞无法增大有关,而非直接抑制有丝分裂。植物质膜中受激素刺激的活性以及肿瘤细胞质膜中组成性激活的NADH氧化酶被硫醇试剂抑制,而基础活性不受影响。这些发现表明硫醇参与了氧化酶激活形式的作用。大鼠肝脏高尔基体对NADH氧化酶的氧化作用被布雷菲德菌素A加GDP抑制。布雷菲德菌素A是一种膜转运的大环内酯类抗生素抑制剂。本文提出了一个模型,其中NADH氧化酶作为一种硫醇-二硫键氧化还原酶活性,参与二硫键的形成和断裂。硫醇-二硫键交换被假定与细胞增大或囊泡出芽时遇到的物理膜位移有关。该模型虽然具有推测性,但确实为进一步实验提供了基础,以探究该酶系统的潜在功能,在某些条件下,该酶系统表现出激素和生长因子刺激的NADH氧化作用。

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