La Roche S D, Leisinger T
Department of Microbiology, Swiss Federal Institute of Technology, ETH-Zentrum, Zürich.
J Bacteriol. 1990 Jan;172(1):164-71. doi: 10.1128/jb.172.1.164-171.1990.
The nucleotide sequence of a cloned 2.8-kilobase-pair BamHI-PstI fragment containing dcmA, the dichloromethane dehalogenase structural gene from Methylobacterium sp. strain DM4, was determined. An open reading frame with a coding capacity of 287 amino acids (molecular weight, 37,430) was identified as dcmA by its agreement with the N-terminal amino acid sequence, the total amino acid composition, and the subunit size of the purified enzyme. Alignment of the deduced dichloromethane dehalogenase amino acid sequence with amino acid sequences of the functionally related eucaryotic glutathione S-transferases revealed three regions containing highly conserved amino acid residues and indicated that dcmA is a member of the glutathione S-transferase supergene family. The 5' terminus of in vivo dcmA transcripts was determined by nuclease S1 mapping to be 82 base pairs upstream of the GTG initiation codon of dcmA. Despite a putative promoter sequence with high resemblance to the Escherichia coli -10 and -35 consensus sequences, located at an appropriate distance from the transcription start point, dcmA was only marginally expressed in E. coli. The strong induction of dichloromethane dehalogenase in Methylobacterium sp. by dichloromethane was abolished by deleting the 1.3-kilobase-pair upstream region of dcmA. Plasmid constructs devoid of this region directed expression of dichloromethane dehalogenase at a constitutively induced level.
测定了来自甲基杆菌属菌株DM4的二氯甲烷脱卤酶结构基因dcmA所在的一个克隆的2.8千碱基对BamHI - PstI片段的核苷酸序列。通过与纯化酶的N端氨基酸序列、总氨基酸组成以及亚基大小相符,鉴定出一个编码容量为287个氨基酸(分子量为37,430)的开放阅读框为dcmA。将推导的二氯甲烷脱卤酶氨基酸序列与功能相关的真核谷胱甘肽S - 转移酶的氨基酸序列进行比对,发现有三个区域含有高度保守的氨基酸残基,这表明dcmA是谷胱甘肽S - 转移酶超基因家族的一员。通过核酸酶S1作图确定体内dcmA转录本的5'末端位于dcmA的GTG起始密码子上游82个碱基对处。尽管在距转录起始点适当距离处有一个与大肠杆菌 - 10和 - 35共有序列高度相似的假定启动子序列,但dcmA在大肠杆菌中仅少量表达。通过缺失dcmA上游1.3千碱基对区域,消除了甲基杆菌属中由二氯甲烷对二氯甲烷脱卤酶的强诱导作用。缺乏该区域的质粒构建体在组成型诱导水平上指导二氯甲烷脱卤酶的表达。