Meyers M, Levinthal M, Goldberger R F
J Bacteriol. 1975 Dec;124(3):1227-35. doi: 10.1128/jb.124.3.1227-1235.1975.
The first enzyme for histidine biosynthesis, encoded in the hisG gene, is involved in regulation of expression of the histidine operon in Salmonella typhimurium. The studies reported here concern the question of how expression of the histidine operon is affected by a mutation in the hisG gene that alters the allosteric site of the first enzyme for histidine biosynthesis, rendering the enzyme completely resistant to inhibition by histidine. The intracellular concentrations of the enzymes encoded in the histidine operon in a strain carrying such a mutation on an episome and missing the chromosomal hisG gene are three- to fourfold higher than in a strain carrying a wild-type hisG gene on the episome. The histidine operon on such a strain fails to derepress in response to histidine limitation and fails to repress in response to excess histidine. Furthermore, utilizing other merodiploid strains, we demonstrate that the wild-type hisG gene is trans dominant to the mutant allele with respect to this regulatory phenomenon. Examination of the regulation of the histidine operon in strains carrying the feedback-resistant mutation in an episome and hisT and hisW mutations in the chromosome showed that the hisG regulatory mutation is epistatic to the hisT and hisW mutations. These data provide additional evidence that the first enzyme for histidine biosynthesis is involved in autogenous regulation of expression of the histidine operon.
hisG基因编码的组氨酸生物合成的第一种酶,参与鼠伤寒沙门氏菌中组氨酸操纵子表达的调控。本文报道的研究关注的问题是,hisG基因中的突变如何影响组氨酸操纵子的表达,该突变改变了组氨酸生物合成第一种酶的别构位点,使该酶完全抗组氨酸抑制。在附加体上携带这种突变且缺失染色体hisG基因的菌株中,组氨酸操纵子编码的酶的细胞内浓度比在附加体上携带野生型hisG基因的菌株高三到四倍。这样的菌株上的组氨酸操纵子在组氨酸限制时不能去阻遏,在组氨酸过量时不能阻遏。此外,利用其他部分二倍体菌株,我们证明就这种调控现象而言,野生型hisG基因相对于突变等位基因是反式显性的。对在附加体上携带反馈抗性突变且在染色体上携带hisT和hisW突变的菌株中组氨酸操纵子的调控进行检查表明,hisG调控突变对hisT和hisW突变是上位性的。这些数据提供了额外的证据,表明组氨酸生物合成的第一种酶参与组氨酸操纵子表达的自身调控。