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需要高内源性组氨酸池才能生长的组氨酰转移核糖核酸合成酶突变体。

Histidyl-transfer ribonucleic acid synthetase mutants requiring a high internal pool of histidine for growth.

作者信息

Straus D S, Ames B N

出版信息

J Bacteriol. 1973 Jul;115(1):188-97. doi: 10.1128/jb.115.1.188-197.1973.

Abstract

Mutants that require histidine due to an altered structural gene for the histidyl-transfer ribonucleic acid synthetase (hisS) have been isolated by a general selection for histidine-requiring strains in which the mutation producing histidine auxotrophy is unlinked to the histidine operon. One of the mutants has been shown to require an abnormally high internal histidine pool for growth owing to an altered synthetase that is unstable at low histidine concentrations. It is difficult to determine accurately the K(m) for histidine of the synthetase enzyme from the mutant because of the instability of the enzyme at limiting histidine concentrations; however, a histidine K(m) value has been estimated that is approximately 100 times higher than the histidine K(m) of the wild-type enzyme. For the mutant strains to achieve the high internal pool of histidine required for growth, all the systems that transport histidine from the growth medium must be functioning to capacity. Amino acids that interfere with histidine transport strongly inhibit the growth of the mutants. The mutants have been useful in providing a selective genetic marker for transductional mapping in the hisS region. The mutants are discussed as representative of a general class of curable mutants that have an altered enzyme with poor affinity for a substrate or coenzyme.

摘要

通过对需要组氨酸的菌株进行全面筛选,分离出了因组氨酰 - 转移核糖核酸合成酶(hisS)结构基因改变而需要组氨酸的突变体,其中产生组氨酸营养缺陷型的突变与组氨酸操纵子不连锁。已证明其中一个突变体由于合成酶改变,在低组氨酸浓度下不稳定,因而生长需要异常高的内部组氨酸池。由于该酶在组氨酸浓度有限时不稳定,所以很难准确测定该突变体合成酶对组氨酸的米氏常数(K(m));然而,据估计其组氨酸K(m)值比野生型酶的组氨酸K(m)值高约100倍。对于突变菌株而言,要达到生长所需的高内部组氨酸池,所有从生长培养基转运组氨酸的系统都必须满负荷运转。干扰组氨酸转运的氨基酸会强烈抑制突变体的生长。这些突变体为在hisS区域进行转导作图提供了一个选择性遗传标记。这些突变体被作为一类可治愈突变体的代表进行讨论,这类突变体具有对底物或辅酶亲和力较差的改变酶。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c095/246229/f02ff931d67a/jbacter00347-0204-a.jpg

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