Mesaconyl-coenzyme A hydratase, a new enzyme of two central carbon metabolic pathways in bacteria

被引:33
作者
Zarzycki, Jan [1 ]
Schlichting, Ansgar [1 ]
Strychalsky, Nina [1 ]
Mueller, Michael [2 ]
Alber, Birgit E. [1 ]
Fuchs, Georg [1 ]
机构
[1] Univ Freiburg, Fac Biol, D-79104 Freiburg, Germany
[2] Univ Freiburg, Fac Chem Pharm & Geowissensch, D-79104 Freiburg, Germany
关键词
D O I
10.1128/JB.01621-07
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
The coenzyme A (CoA)-activated C-5-dicarboxylic acids mesaconyl-CoA and beta-methylmalyl-CoA play roles in two as yet not completely resolved central carbon metabolic pathways in bacteria. First, these compounds are intermediates in the 3-hydroxypropionate cycle for autotrophic CO2 fixation in Chloroflexus aurantiacus, a phototrophic green nonsulfur bacterium. Second, mesaconyl-CoA and beta-methylmalyl-CoA are intermediates in the ethylmalonyl-CoA pathway for acetate assimilation in various bacteria, e.g., in Rhodobacter sphaeroides, Methylabacterium extorquens, and Streptomyces species. In both cases, mesaconyl-CoA hydratase was postulated to catalyze the interconversion of mesaconyl-CoA and beta-methylmalyl-CoA. The putative genes coding for this enzyme in C aurantiacus and R. sphaeroides were cloned and heterologously expressed in Escherichia coli, and the proteins were purified and studied. The recombinant homodimeric 80-kDa proteins catalyzed the reversible dehydration of erythro-beta-methylmalyl-CoA to mesaconyl-CoA with rates of 1,300 mu mol min(-1) mg protein(-1). Genes coding for similar enzymes with two (R)-enoyl-CoA hydratase domains are present in the genomes of Roseiflexus, Methylobacterium, Hyphomonas, Rhodospirillum, Xanthobacter, Caulabacter, Magnetospirillum, jannaschia, Sagittula, Parvibaculum, Stappia, Oceanicola, Loktanella, Silicibacter, Roseobacter, Roseovarius, Dinoroseobacter, Sulfitobacter, Paracoccus, and Ralstonia species. A similar yet distinct class of enzymes containing only one hydratase domain was found in various other bacteria, such as Streptomyces species. The role of this widely distributed new enzyme is discussed.
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页码:1366 / 1374
页数:9
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