Affiliation:
1. Department of Biotechnology, University of Tokyo, Japan. aynaga@hongo.ecc.u-tokyo.ac.jp
Abstract
The linB gene product (LinB), 1,3,4,6-tetrachloro-1,4-cyclohexadiene halidohydrolase, which is involved in the degradation of gamma-hexachlorocyclohexane in Sphingomonas paucimobilis UT26 (Y. Nagata, T. Nariya, R. Ohtomo, M. Fukuda, K. Yano, and M. Takagi, J. Bacteriol. 175:6403-6410, 1993), was overproduced in E. coli and purified to homogeneity. The molecular mass of LinB was deduced to be 30 kDa by gel filtration chromatography and 32 kDa by electrophoresis on sodium dodecyl sulfate-polyacrylamide gel, indicating that LiuB is a monomeric enzyme. The optimal pH for activity was 8.2. Not only monochloroalkanes (C3 to C10) but also dichloroalkanes, bromoalkanes, and chlorinated allphatic alcohols were good substrates for LinB, suggesting that LinB shares properties with another haloalkane dehalogenase, DhlA (S. Keuning, D.B. Janssen, and B. Witholt, J. Bacteriol. 163:635-639, 1985), which shows significant similarity to LinB in primary structure (D. B. Janssen, F. Pries, J. van der Ploeg, B. Kazemier, P. Terpstra, and B. Witholt, J. Bacteriol. 171:6791-6799, 1989) but not in substrate specificity. Principal component analysis of substrate activities of various haloalkane dehalogenases suggested that LinB probably constitutes a new substrate specificity class within this group of enzymes.
Publisher
American Society for Microbiology
Subject
Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology
Reference26 articles.
1. Homology modelling of haloalkane dehalogenase of Sphingomonas paucimobilis UT26;Damborsky J.;Biologia,1995
2. Damborsky J. M. G. Nyandoroh M. Nemec I. Holoubek A. T. Bull and D. J. Hardman. Some biochemical properties and the classification of a range of bacterial haloalkane dehalogenases. Biotechnol. Appl. Biochem. in press.
3. Biotransformation of chloro- and bromoalkenes by crude extracts of Rhodococcus erythropolis Y2;Damborsky J.;Adv. Environ. Res.,1997
4. Damborsky J. M. Kuty M. Nemec and J. Koca. Molecular modelling study of the catalytic mechanism of haloalkane dehalogenase. I. Quantum chemical study of the first reaction step. J. Chem. Inf. Comput. Sci. in press.
5. Crystal structure of haloalkane dehalogenase: an enzyme to detoxify halogenated alkanes;Franken S. M.;EMBO J.,1991
Cited by
141 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献