Enantioselective Transformation of α-Hexachlorocyclohexane by the Dehydrochlorinases LinA1 and LinA2 from the Soil Bacterium Sphingomonas paucimobilis B90A

Author:

Suar Mrutyunjay12,Hauser Andrea3,Poiger Thomas3,Buser Hans-Rudolf3,Müller Markus D.3,Dogra Charu1,Raina Vishakha1,Holliger Christof4,van der Meer Jan Roelof5,Lal Rup1,Kohler Hans-Peter E.2

Affiliation:

1. Department of Zoology, University of Delhi, Delhi-110007, India

2. Swiss Federal Institute of Aquatic Research and Technology (Eawag), CH-8600 Dübendorf, Switzerland

3. Swiss Federal Research Station (FAW), CH-8820 Wädenswil, Switzerland

4. EPFL, ENAC-ISTE, Laboratory for Environmental Biotechnology, CH-1015 Lausanne, Switzerland

5. Department of Fundamental Microbiology, University of Lausanne, CH-1015 Lausanne, Switzerland

Abstract

ABSTRACT Sphingomonas paucimobilis B90A contains two variants, LinA1 and LinA2, of a dehydrochlorinase that catalyzes the first and second steps in the metabolism of hexachlorocyclohexanes (R. Kumari, S. Subudhi, M. Suar, G. Dhingra, V. Raina, C. Dogra, S. Lal, J. R. van der Meer, C. Holliger, and R. Lal, Appl. Environ. Microbiol. 68: 6021-6028, 2002). On the amino acid level, LinA1 and LinA2 were 88% identical to each other, and LinA2 was 100% identical to LinA of S. paucimobilis UT26. Incubation of chiral α-hexachlorocyclohexane (α-HCH) with Escherichia coli BL21 expressing functional LinA1 and LinA2 S -glutathione transferase fusion proteins showed that LinA1 preferentially converted the (+) enantiomer, whereas LinA2 preferred the (−) enantiomer. Concurrent formation and subsequent dissipation of β-pentachlorocyclohexene enantiomers was also observed in these experiments, indicating that there was enantioselective formation and/or dissipation of these enantiomers. LinA1 preferentially formed (3 S ,4 S ,5 R ,6 R )-1,3,4,5,6-pentachlorocyclohexene, and LinA2 preferentially formed (3 R ,4 R ,5 S ,6 S )-1,3,4,5,6-pentachlorocyclohexene. Because enantioselectivity was not observed in incubations with whole cells of S. paucimobilis B90A, we concluded that LinA1 and LinA2 are equally active in this organism. The enantioselective transformation of chiral α-HCH by LinA1 and LinA2 provides the first evidence of the molecular basis for the changed enantiomer composition of α-HCH in many natural environments. Enantioselective degradation may be one of the key processes determining enantiomer composition, especially when strains that contain only one of the linA genes, such as S. paucimobilis UT26, prevail.

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

Reference23 articles.

1. Buser, H. R., and M. D. Müller. 1995. Isomer and enantioselective degradation of hexachlorocyclohexane isomers in sewage sludge under anaerobic conditions. Environ. Sci. Technol.29:664-672.

2. Organization of lin Genes and IS 6100 among Different Strains of Hexachlorocyclohexane-Degrading Sphingomonas paucimobilis : Evidence for Horizontal Gene Transfer

3. Dupire, A., and M. Raucourt. 1945. A new insecticide: the hexachloride of benzene. C. R. Seances Acad. Agric. Fr.29:470-472.

4. Eliel E. E. and S. H. Wilen. 1994. Stereochemistry of organic compounds. John Wiley & Sons Inc. New York N.Y.

5. Hegeman, W. J., and R. W. Laane. 2002. Enantiomeric enrichment of chiral pesticides in the environment. Rev. Environ. Contam. Toxicol.173:85-116.

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