Chang Y Y, Cronan J E
J Bacteriol. 1986 Jul;167(1):312-8. doi: 10.1128/jb.167.1.312-318.1986.
Two Escherichia coli pyruvate oxidase (EC 1.2.2.2) mutant genes, poxB3 and poxB4, were cloned on plasmid pBR322. The poxB3 mutant oxidase which was described previously (Y. Y. Chang and J. E. Cronan, Jr., Proc. Natl. Acad. Sci. USA 81:4348-4352, 1984) was deficient in lipid activation but retained full catalytic activity. The poxB3 mutation was located in the C-terminal half of the gene, and the nucleotide alteration has been determined by DNA sequencing of this part of the gene and by comparing the sequence with that of the wild-type strain (C. Grabau and J. E. Cronan, Jr., submitted for publication). The poxB3 oxidase mutation is the substitution of a serine residue for Pro-536. poxB4, another pyruvate oxidase mutant gene, was also deficient in lipid activation. The major difference between the poxB3 and poxB4 oxidase was in the binding of Triton detergents. The poxB4 mutation was also located in the C-terminal half of the gene, and sequence analysis has shown that only one nucleotide base was altered, which resulted in Ala-467 being converted to a threonine residue. The results of the amino acid substitutions in the mutant proteins, leading to the functional alteration of the enzyme, are discussed.
两个大肠杆菌丙酮酸氧化酶(EC 1.2.2.2)突变基因poxB3和poxB4被克隆到质粒pBR322上。之前已描述过的poxB3突变氧化酶(Y.Y. Chang和J.E. Cronan, Jr., Proc. Natl. Acad. Sci. USA 81:4348 - 4352, 1984)缺乏脂质激活能力,但保留了完整的催化活性。poxB3突变位于基因的C端后半部分,该部分基因的核苷酸改变已通过DNA测序确定,并与野生型菌株的序列进行了比较(C. Grabau和J.E. Cronan, Jr., 已投稿待发表)。poxB3氧化酶突变是用丝氨酸残基取代了Pro - 536。另一个丙酮酸氧化酶突变基因poxB4也缺乏脂质激活能力。poxB3和poxB4氧化酶之间的主要差异在于Triton去污剂的结合。poxB4突变也位于基因的C端后半部分,序列分析表明只有一个核苷酸碱基发生了改变,导致Ala - 467转变为苏氨酸残基。文中讨论了突变蛋白中氨基酸取代导致酶功能改变的结果。