Higgins Timothy P, Hope Stephen J, Effendi Agus J, Dawson Shula, Dancer Brian N
Cardiff School of Biosciences, Cardiff University, Cardiff CF10 3TL, UK.
Biodegradation. 2005 Oct;16(5):485-92. doi: 10.1007/s10532-004-5670-5.
We previously reported the presence of both haloalcohol and haloalkanoate dehalogenase activity in the Agrobacterium sp. strain NHG3. The versatile nature of the organism led us to further characterise the genetic basis of these dehalogenation activities. Cloning and sequencing of the haloalcohol dehalogenase and subsequent analysis suggested that it was part of a highly conserved catabolic gene cluster. Characterisation of the haloalkanoate dehalogenase enzyme revealed the presence of two stereospecific enzymes with a narrow substrate range which acted on D-2-chloropropionic and L-2-chloropropionoic acid, respectively. Cloning and sequencing indicated that the two genes were separated by 87 bp of non-coding DNA and were preceded by a putative transporter gene 66 bp upstream of the D-specific enzyme.
我们之前报道过在土壤杆菌属菌株NHG3中存在卤代醇脱卤酶和卤代烷酸脱卤酶活性。该生物体的多功能特性促使我们进一步表征这些脱卤活性的遗传基础。卤代醇脱卤酶的克隆和测序以及后续分析表明,它是一个高度保守的分解代谢基因簇的一部分。卤代烷酸脱卤酶的表征揭示了存在两种立体特异性酶,其底物范围狭窄,分别作用于D-2-氯丙酸和L-2-氯丙酸。克隆和测序表明,这两个基因被87 bp的非编码DNA隔开,并且在D特异性酶上游66 bp处有一个假定的转运基因。