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首页> 外文期刊>Biochemistry >Molecular cloning and characterization of a tumor-associated, growth-related, and time-keeping hydroquinone (NADH) oxidase (tNOX) of the HeLa cell surface.
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Molecular cloning and characterization of a tumor-associated, growth-related, and time-keeping hydroquinone (NADH) oxidase (tNOX) of the HeLa cell surface.

机译:Hela细胞表面的肿瘤相关,生长相关和时间保持氢醌(NADH)氧化酶(TNOX)的分子克隆和表征。

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摘要

NOX proteins are growth-related cell surface proteins that catalyze both hydroquinone or NADH oxidation and protein disulfide interchange and exhibit prion-like properties. The two enzymatic activities alternate to generate a regular period length of about 24 min. Here we report the expression, cloning, and characterization of a tumor-associated NADH oxidase (tNOX). The cDNA sequence of 1830 bp is located on gene Xq25-26 with an open reading frame encoding 610 amino acids. The activities of the bacterially expressed tNOX oscillate with a period length of 22 min as is characteristic of tNOX activities in situ. The activities are inhibited completely by capsaicin, which represents a defining characteristic of tNOX activity. Functional motifs identified by site-directed mutagenesis within the C-terminal portion of the tNOX protein corresponding to the processed plasma membrane-associated form include quinone (capsaicin), copper and adenine nucleotide binding domains, and two cysteines essential for catalytic activity. Four of the six cysteine to alanine replacements retained enzymatic activity, but the period lengths of the oscillations were increased. A single protein with two alternating enzymatic activities indicative of a time-keeping function is unprecedented in the biochemical literature.
机译:NOx蛋白是生长相关的细胞表面蛋白,其催化氢醌或NADH氧化和蛋白二硫化物互换和表现出朊病毒性性质。两种酶活性交替以产生约24分钟的规则周期长度。在这里,我们报告了肿瘤相关的NADH氧化酶(TNOX)的表达,克隆和表征。 1830bp的cDNA序列位于基因XQ25-26上,具有编码610个氨基酸的开放阅读框。细胞表达的TNOX的活性以22分钟的时间长度为22分钟,原位的TNOS活性的特征为22分钟。通过辣椒素完全抑制活性,这表示TNOx活性的定义特征。通过对应于加工的质膜相关形式的TNOX蛋白的C末端部分内鉴定的功能基质,其包括醌(辣椒蛋白),铜和腺嘌呤核苷酸结合结构域,以及对催化活性必需的两个半胱氨酸。六个半胱氨酸中的四个至丙氨酸替代保留酶活性,但振荡的周期长度增加。具有两个交替酶活性的单一蛋白质,其表明在生化文献中是前所未有的。

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