Salicylate 5-Hydroxylase from Ralstonia sp. Strain U2: a Monooxygenase with Close Relationships to and Shared Electron Transport Proteins with Naphthalene Dioxygenase

Author:

Zhou Ning-Yi1,Al-Dulayymi Jumáa2,Baird Mark S.2,Williams Peter A.1

Affiliation:

1. School of Biological Sciences

2. Department of Chemistry, University of Wales, Bangor, Gwynedd LL57 2UW, Wales, United Kingdom

Abstract

ABSTRACT The genes from the oxygenase cluster nagAaGHAbAcAd of naphthalene-degrading Ralstonia sp. strain U2 were cloned and overexpressed. Salicylate 5-hydroxylase (S5H) activity, converting salicylate to gentisate, was present in vitro only in the single extract of cells with overexpressed nagAaGHAb or in a mixture of three cell extracts containing, respectively, NagGH (the oxygenase components), NagAa (ferredoxin reductase), and NagAb (ferredoxin). Each of the three extracts required for S5H activity was rate limiting in the presence of excess of the others but, when in excess, did not affect the rate of catalysis. S5H catalyzed the 5-hydroxylation of the aromatic rings of 3- and 4-substituted salicylates. However, the methyl group of 5-methylsalicylate was hydroxylated to produce the 5-hydroxymethyl derivative and the 6-position on the ring of 5-chlorosalicylate was hydroxylated, producing 5-chloro-2,6-dihydroxybenzoate. In an assay for the nag naphthalene dioxygenase (NDO) based on the indole-linked oxidation of NADH, three extracts were essential for activity (NagAcAd, NagAa, and NagAb). NDO and S5H were assayed in the presence of all possible combinations of the nag proteins and the corresponding nah NDO proteins from the “classical” naphthalene degrader P. putida NCIMB9816. All three oxygenase components functioned with mixed combinations of the electron transport proteins from either strain. The S5H from strain U2 is a unique monooxygenase which shares sequence similarity with dioxygenases such as NDO but is also sufficiently similar in structure to interact with the same electron transport chain and probably does so in vivo during naphthalene catabolism in strain U2.

Publisher

American Society for Microbiology

Subject

Molecular Biology,Microbiology

Reference56 articles.

1. Armengaud, J., J. Gaillard, and K. N. Timmis. 2000. A second [2Fe-2S] ferredoxin from Sphingomonas sp. strain RW1 can function as an electron donor for the dioxin dioxygenase J. Bacteriol.182:2238-2244.

2. Bhattacharaya S. C. and D. E. Seymour. 1950. 4-Aminosalicylic acid and its derivatives. Part II. The syntheses of 4-amino-2 5- and 4-amino-2 3-dihydroxybenzoic acid. J. Chem. Soc. 1950: 1139-1140.

3. Butler, C. S., and J. R. Mason. 1997. Structure-function analysis of the bacterial aromatic ring-hydroxylating dioxygenases. Adv. Microb. Physiol.38:47-84.

4. Byrne, A. M., J. J. Kukor, and R. H. Olsen. 1995. Sequence analysis of the gene cluster encoding toluene-3-monooxygenase from Pseudomonas pickettii. Gene154:65-70.

5. Cane, P. A., and P. A. Williams. 1986. A restriction map of the catabolic plasmid pWW60-1 and the location of some of its catabolic genes. J. Gen. Microbiol.132:2919-2929.

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