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首页> 外文期刊>Journal of bacteriology >2-Hydroxycyclohexanecarboxyl Coenzyme A Dehydrogenase, an Enzyme Characteristic of the Anaerobic Benzoate Degradation Pathway Used by Rhodopseudomonas palustris
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2-Hydroxycyclohexanecarboxyl Coenzyme A Dehydrogenase, an Enzyme Characteristic of the Anaerobic Benzoate Degradation Pathway Used by Rhodopseudomonas palustris

机译:2-羟基环己烷羧基辅酶A脱氢酶,Phodopseudomonas palustris使用的厌氧苯甲酸酯降解途径的酶特性

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A gene, badH, whose predicted product is a member of the short-chain dehydrogenase/reductase family of enzymes, was recently discovered during studies of anaerobic benzoate degradation by the photoheterotrophic bacterium Rhodopseudomonas palustris. Purified histidine-tagged BadH protein catalyzed the oxidation of 2-hydroxycyclohexanecarboxyl coenzyme A (2-hydroxychc-CoA) to 2-ketocyclohexanecarboxyl-CoA. These compounds are proposed intermediates of a series of three reactions that are shared by the pathways of cyclohexanecarboxylate and benzoate degradation used byR. palustris. The 2-hydroxychc-CoA dehydrogenase activity encoded by badH was dependent on the presence of NAD+; no activity was detected with NADP+ as a cofactor. The dehydrogenase activity was not sensitive to oxygen. The enzyme has apparent Km values of 10 and 200 μM for 2-hydroxychc-CoA and NAD+, respectively. Western blot analysis with antisera raised against purified His-BadH identified a 27-kDa protein that was present in benzoate- and cyclohexanecarboxylate-grown but not in succinate-grown R. palustris cell extracts. The active form of the enzyme is a homotetramer. badH was determined to be the first gene in an operon, termed the cyclohexanecarboxylate degradation operon, containing genes required for both benzoate and cyclohexanecarboxylate degradation. A nonpolar R. palustris badH mutant was unable to grow on benzoate or cyclohexanecarboxylate but had wild-type growth rates on succinate. Cells blocked in expression of the entire cyclohexanecarboxylate degradation operon excreted cyclohex-1-ene-1-carboxylate into the growth medium when given benzoate. This confirms that cyclohex-1-ene-1-carboxyl-CoA is an intermediate of anaerobic benzoate degradation by R. palustris. This compound had previously been shown not to be formed by Thauera aromatica, a denitrifying bacterium that degrades benzoate by a pathway that is slightly different from theR. palustris pathway. 2-Hydroxychc-CoA dehydrogenase does not participate in anaerobic benzoate degradation by T. aromatica and thus may serve as a useful indicator of an R. palustris-type benzoate degradation pathway.
机译:最近,在研究光异养细菌 Rhodopseudomonas palustris 降解厌氧苯甲酸酯时,发现了一个 badH 基因,其预测产物是该酶的短链脱氢酶/还原酶家族的成员。 em>。纯化的带有组氨酸标签的BadH蛋白催化2-羟基环己烷羧基辅酶A(2-羟基chc-CoA)氧化为2-酮环己烷羧基-CoA。这些化合物是emR所使用的一系列三个反应的中间体,它们是环己烷羧酸酯和苯甲酸酯降解途径共有的。 palustris badH 编码的2-hydroxychc-CoA脱氢酶活性取决于NAD + 的存在。以NADP + 作为辅因子未检测到活性。脱氢酶活性对氧不敏感。对于2-hydroxychc-CoA和NAD + ,该酶的表观 K m 值分别为10和200μM。用针对纯化的His-BadH的抗血清进行的蛋白质印迹分析确定了一种27 kDa的蛋白质,该蛋白质存在于苯甲酸盐和环己烷羧酸盐中,但在琥珀酸盐中的 R中不存在。 palustris 细胞提取物。酶的活性形式是同四聚体。已确定 badH 是操纵子中的第一个基因,称为环己烷羧酸酯降解操纵子,其中包含苯甲酸酯和环己烷羧酸酯降解所需的基因。非极性 R。 palustris badH 突变体无法在苯甲酸酯或环己烷羧酸酯上生长,但在琥珀酸酯上具有野生型生长速率。当给予苯甲酸酯时,阻止整个环己烷羧酸酯降解的表达的细胞操纵子将环己-1-烯-1-羧酸排泄到生长培养基中。这证实了环己-1-烯-1-羧基-CoA是 R降解厌氧苯甲酸酯的中间体。 palustris 。先前已证明该化合物不是由芳香木藻(emem)形成的,该细菌是反硝化细菌,它通过与 R略有不同的途径降解苯甲酸酯。 palustris 途径。 2-羟基CoA脱氢酶不参与 T对厌氧苯甲酸酯的降解。芳香族,因此可以用作 R的有用指标。 palustris 型苯甲酸酯降解途径。

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