Affiliation:
1. Department of Chemistry and Biochemistry, Gonzaga University, Spokane, Washington 99258
2. Department of Chemistry and Biochemistry and the Molecular Biology Institute, UCLA, Los Angeles, California 90095
Abstract
ABSTRACT
Rhodoquinone (RQ) is an important cofactor used in the anaerobic energy metabolism of
Rhodospirillum rubrum
. RQ is structurally similar to ubiquinone (coenzyme Q or Q), a polyprenylated benzoquinone used in the aerobic respiratory chain. RQ is also found in several eukaryotic species that utilize a fumarate reductase pathway for anaerobic respiration, an important example being the parasitic helminths. RQ is not found in humans or other mammals, and therefore inhibition of its biosynthesis may provide a parasite-specific drug target. In this report, we describe several
in vivo
feeding experiments with
R. rubrum
used for the identification of RQ biosynthetic intermediates. Cultures of
R. rubrum
were grown in the presence of synthetic analogs of ubiquinone and the known Q biosynthetic precursors demethylubiquinone, demethoxyubiquinone, and demethyldemethoxyubiquinone, and assays were monitored for the formation of RQ
3
. Data from time course experiments and
S
-adenosyl-
l
-methionine-dependent
O
-methyltransferase inhibition studies are discussed. Based on the results presented, we have demonstrated that Q is a required intermediate for the biosynthesis of RQ in
R. rubrum
.
Publisher
American Society for Microbiology
Subject
Molecular Biology,Microbiology
Reference73 articles.
1. A Tetrahydrofolate-Dependent
O
-Demethylase, LigM, Is Crucial for Catabolism of Vanillate and Syringate in
Sphingomonas paucimobilis
SYK-6
2. Ackrell, B. A. C., M. K. Johnson, R. P. Gunsalus, and G. Cecchini. 1992. Structure and function of succinate dehydrogenase and fumarate reductase, p. 229-297. In F. Muller (ed.), Chemistry and biochemistry of flavoenzymes, vol. III. CRC Press, Inc., Boca Raton, FL.
3. Alexander, K., and I. G. Young. 1978. Alternative hydroxylases for the aerobic and anaerobic biosynthesis of ubiquinone in Escherichia coli. Biochemistry 17 : 4750-4755.
4. Baba, S. W., G. I. Belogrudov, J. C. Lee, P. T. Lee, J. Strahan, J. N. Shepherd, and C. F. Clarke. 2004. Yeast Coq5 C-methyltransferase is required for stability of other polypeptides involved in coenzyme Q biosynthesis. J. Biol. Chem. 279 : 10052-10059.
5. Barkovich, R. J., A. Shtanko, J. A. Shepherd, P. T. Lee, A. Y. Hsu, D. C. Myles, A. Tzagoloff, and C. F. Clarke. 1997. Characterization of the COQ5 gene from Saccharomyces cerevisiae. J. Biol. Chem. 272 : 9182-9188.
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