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首页> 外文期刊>Journal of bacteriology >Cyclohexa-1,5-Diene-1-Carbonyl-Coenzyme A (CoA) Hydratases of Geobacter metallireducens and Syntrophus aciditrophicus: Evidence for a Common Benzoyl-CoA Degradation Pathway in Facultative and Strict Anaerobes
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Cyclohexa-1,5-Diene-1-Carbonyl-Coenzyme A (CoA) Hydratases of Geobacter metallireducens and Syntrophus aciditrophicus: Evidence for a Common Benzoyl-CoA Degradation Pathway in Facultative and Strict Anaerobes

机译:土工金属还原菌和嗜酸性嗜酸菌的环六-1,5-二烯-1-羰基辅酶A(CoA)水合酶:兼性和严格厌氧菌中常见的苯甲酰基-CoA降解途径的证据

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摘要

In the denitrifying bacterium Thauera aromatica, the central intermediate of anaerobic aromatic metabolism, benzoyl-coenzyme A (CoA), is dearomatized by the ATP-dependent benzoyl-CoA reductase to cyclohexa-1,5-diene-1-carbonyl-CoA (dienoyl-CoA). The dienoyl-CoA is further metabolized by a series of β-oxidation-like reactions of the so-called benzoyl-CoA degradation pathway resulting in ring cleavage. Recently, evidence was obtained that obligately anaerobic bacteria that use aromatic growth substrates do not contain an ATP-dependent benzoyl-CoA reductase. In these bacteria, the reactions involved in dearomatization and cleavage of the aromatic ring have not been shown, so far. In this work, a characteristic enzymatic step of the benzoyl-CoA pathway in obligate anaerobes was demonstrated and characterized. Dienoyl-CoA hydratase activities were determined in extracts of Geobacter metallireducens (iron reducing), Syntrophus aciditrophicus (fermenting), and Desulfococcus multivorans (sulfate reducing) cells grown with benzoate. The benzoate-induced genes putatively coding for the dienoyl-CoA hydratases in the benzoate degraders G. metallireducens and S. aciditrophicus were heterologously expressed and characterized. Both gene products specifically catalyzed the reversible hydration of dienoyl-CoA to 6-hydroxycyclohexenoyl-CoA (Km, 80 and 35 μM; Vmax, 350 and 550 μmol min?1 mg?1, respectively). Neither enzyme had significant activity with cyclohex-1-ene-1-carbonyl-CoA or crotonyl-CoA. The results suggest that benzoyl-CoA degradation proceeds via dienoyl-CoA and 6-hydroxycyclohexanoyl-CoA in strictly anaerobic bacteria. The steps involved in dienoyl-CoA metabolism appear identical in all nonphotosynthetic anaerobic bacteria, although totally different benzene ring-dearomatizing enzymes are present in facultative and obligate anaerobes.
机译:在反硝化细菌 Thauera aromaa 中,厌氧芳香代谢的中心中间体苯甲酰辅酶A(CoA)被ATP依赖的苯甲酰CoA还原酶脱芳香化为环己-1,5-二烯1-羰基-CoA(二烯酰基-CoA)。二烯酰辅酶A通过所谓的苯甲酰辅酶A降解途径的一系列β-氧化样反应进一步代谢,导致环裂解。最近,获得的证据表明,使用芳香族生长底物的专性厌氧细菌不包含ATP依赖的苯甲酰辅酶A还原酶。在这些细菌中,到目前为止,尚未显示出与芳香环脱芳香化和裂解有关的反应。在这项工作中,在专性厌氧菌中苯甲酰辅酶A途径的特征性酶促步骤得到了证明和表征。测定了 Geobacter metallireducens (还原铁), Syntrophus aciditrophicus (发酵)和 Desococcuscus multivorans (硫酸盐还原)提取物中的二烯酰-CoA水合酶活性。 )与苯甲酸盐一起生长的细胞。在苯甲酸酯降解物 G中,苯甲酸酯诱导的基因推测编码二烯酰基-CoA水合酶。金属还原素 S。嗜酸营养菌被异源表达和表征。两种基因产物均特异性催化二烯丙基-CoA可逆水合为6-羟基环己烯酰-CoA( K m ,80和35μM; V < sub> max ,350和550μmolmin ?1 mg ?1 )。两种酶都没有对环己-1-烯-1-羰基-CoA或巴豆酰基-CoA具有显着活性。结果表明,在严格厌氧的细菌中,苯甲酰辅酶A的降解通过二烯酰辅酶A和6-羟基环己酰辅酶A进行。尽管在兼性和专性厌氧菌中存在完全不同的苯环脱芳香化酶,但在所有非光合厌氧菌中涉及二烯酰辅酶A代谢的步骤都相同。

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