首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >In Vitro Assembly of Neurospora Assimilatory Nitrate Reductase from Protein Subunits of a Neurospora Mutant and the Xanthine Oxidizing or Aldehyde Oxidase Systems of Higher Animals
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In Vitro Assembly of Neurospora Assimilatory Nitrate Reductase from Protein Subunits of a Neurospora Mutant and the Xanthine Oxidizing or Aldehyde Oxidase Systems of Higher Animals

机译:从神经孢子突变体的蛋白质亚基和高级动物的黄嘌呤氧化或醛氧化酶系统的神经孢子模拟硝酸还原酶的体外组装。

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摘要

In vitro assembly or complementation of a hybrid assimilatory nitrate reductase was attained by mixing a preparation of nitrate-induced N. crassa mutant nit-1 specifically with acid-treated (pH 2.5) bovine milk or intestinal xanthine oxidase, rabbit liver aldehyde oxidase, or chicken liver xanthine dehydrogenase. The complementation reaction specifically required induced nit-1, the only nitrate reductase mutant of Neurospora that lacked xanthine dehydrogenase and was unable to use hypoxathine or nitrate as a sole nitrogen source. The complementing activities of the above acid-treated enzymes correspond to their xanthine or aldehyde oxidizing activity profiles on sucrose density gradients. The resulting soluble, reduced nicotinamide adenine dinucleotide phosphate (NADPH)-nitrate reductases are the same as the Neurospora wild type enzyme in sucrose density gradient profile, molecular weight, substrate affinities, and sensitivity to inhibitors and temperature. By analogy to a similar in vitro complementation of nitrate reductase in mixtures of induced nit-1 and individual nonalleic Neurospora mutants, or uninduced wild type, the complemented nitrate apparently consists of an inducible protein subunit (possessing inducible NADPH-cytochrome c reductase) furnished by nit-1 and a subunit from the acid-treated xanthine or aldehyde oxidizing system which can substitute for the constitutive component furnished by the other mutants or uninduced wild type. The data suggest that Neurospora nitrate reductase and the xanthine oxidizing system and aldehyde oxidase of animals, all of which are molybdenum-containing enzymes catalyzing the reduction of nitrate to nitrite, share a highly similar protein subunit.
机译:通过将硝酸盐诱导的猪笼草N. crassa突变体nit-1的制剂与酸处理(pH 2.5)的牛乳或肠黄嘌呤氧化酶,兔肝醛氧化酶或鸡肝黄嘌呤脱氢酶。互补反应特别需要诱导nit-1,这是Neurospora唯一的硝酸还原酶突变体,它缺乏黄嘌呤脱氢酶,并且不能使用次黄嘌呤或硝酸盐作为唯一的氮源。上述经酸处理的酶的互补活性对应于其在蔗糖密度梯度上的黄嘌呤或醛氧化活性曲线。所得的可溶性还原烟酰胺腺嘌呤二核苷酸磷酸(NADPH)-硝酸盐还原酶与蔗糖密度梯度分布,分子量,底物亲和力以及对抑制剂和温度的敏感性方面与Neurospora野生型酶相同。与诱导的nit-1和单个非allealic Neurospora突变体或未诱导的野生型混合物的硝酸盐还原酶类似的体外互补作用类似,互补的硝酸盐显然由可诱导的蛋白质亚基(具有可诱导的NADPH-细胞色素c还原酶)组成,由nit-1和来自酸处理的黄嘌呤或醛氧化系统的亚基,可以替代其他突变体或未诱导的野生型提供的组成成分。数据表明,动物的神经孢菌素硝酸还原酶和黄嘌呤氧化系统和醛氧化酶均是催化硝酸盐还原为亚硝酸盐的含钼酶,它们具有高度相似的蛋白质亚基。

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