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粗糙脉孢菌氮控制回路调节基因和结构基因中的琥珀色无义突变。

Amber nonsense mutations in regulatory and structural genes of the nitrogen control circuit of Neurospora crassa.

作者信息

Perrine K G, Marzluf G A

机构信息

Department of Biochemistry, Ohio State University, Columbus 43210.

出版信息

Curr Genet. 1986;10(9):677-84. doi: 10.1007/BF00410916.

Abstract

Neurospora crassa possesses a set of nitrogen-regulated enzymes whose expression requires a lifting of nitrogen catabolite repression and specific induction. The nit-2 gene is a major regulatory locus which appears to act in a positive way to turn on the expression of these nitrogen-related enzymes whereas the nit-4 gene appears to mediate nitrate induction of nitrate and nitrite reductase. The nit-3 gene specifies nitrate reductase and is subject to control by both nit-2 and nit-4. Many new nit-2, nit-3, and nit-4 mutants were isolated in order to obtain amber nonsense mutations in these loci which were suppressible by the suppressor gene, Ssu-1. A nit-2 nonsense mutant was isolated which has altered regulatory properties for control of nitrate reductase. L-amino acid oxidase, and uricase, and which may encode a truncated regulatory protein. Four nit-3 nonsense mutations were isolated, each of which completely lacks nitrate reductase activity, which is restored to markedly different levels by suppression with Ssu-1. Studies of heat activation and thermal lability of nitrate reductase suggest a qualitative alteration of the enzyme occurs in two of the Ssu-1 nit-3 strains.

摘要

粗糙脉孢菌拥有一组受氮调控的酶,其表达需要解除氮分解代谢物阻遏并进行特定诱导。nit-2基因是一个主要的调控位点,似乎以正向方式开启这些与氮相关酶的表达,而nit-4基因似乎介导硝酸盐对硝酸还原酶和亚硝酸还原酶的诱导。nit-3基因决定硝酸还原酶,并且受nit-2和nit-4两者的控制。为了在这些位点获得可被抑制基因Ssu-1抑制的琥珀色无义突变,分离出了许多新的nit-2、nit-3和nit-4突变体。分离出了一个nit-2无义突变体,它对硝酸还原酶、L-氨基酸氧化酶和尿酸酶的控制具有改变的调控特性,并且可能编码一种截短的调控蛋白。分离出了四个nit-3无义突变,每个突变体都完全缺乏硝酸还原酶活性,通过用Ssu-1抑制可将其恢复到明显不同的水平。对硝酸还原酶的热激活和热不稳定性的研究表明,在两个Ssu-1 nit-3菌株中该酶发生了定性改变。

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