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Novel Isonitrile Hydratase Involved in Isonitrile Metabolism

机译:涉及异腈代谢的新型异腈水合酶

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摘要

We previously discovered N-substituted formamide deformylase (NfdA) in Arthrobacter pascens F164, which degrades N-substituted formamide (Fukatsu, H., Hashimoto, Y., Goda, M., Higashibata, H., and Kobayashi, M. (2004) Proc. Natl. Acad. Sci. U.S.A. 101, 13726–13731). In this study, we found an enzyme involved in the first step of isonitrile metabolism, isonitrile hydratase, that hydrates isonitrile to the corresponding N-substituted formamide. First, we investigated the optimum culture conditions for the production of isonitrile hydratase. The highest enzyme activity was obtained when A. pascens F164 was cultured in a nutrient medium containing N-benzylformamide. This Arthrobacter isonitrile hydratase was purified, characterized, and compared with Pseudomonas putida N19-2 isonitrile hydratase (InhA), which is the sole one reported at present. Arthrobacter isonitrile hydratase was found to have a molecular mass of about 530 kDa and to consist of 12 identical subunits. The apparent Km value for cyclohexyl isocyanide was 0.95 ± 0.05 mm. A. pascens F164 grew and exhibited the isonitrile hydratase and N-substituted formamide deformylase activities when cultured in a medium containing an isonitrile as the sole carbon and nitrogen sources. However, both enzyme activities were not observed on culture in a medium containing glycerol and (NH4)2SO4 as the sole carbon and nitrogen sources, respectively. These findings suggested that the Arthrobacter enzyme is an inducible enzyme, possibly involved in assimilation and/or detoxification of isonitrile. Moreover, gene cloning of the Arthrobacter enzyme revealed no sequence similarity between this enzyme and InhA. Comparison of their properties and features demonstrated that the two enzymes are biochemically, immunologically, and structurally different from each other. Thus, we discovered a new isonitrile hydratase named InhB.
机译:我们先前在pascens F164中发现了N-取代的甲酰胺甲酰化酶(NfdA),该酶降解N-取代的甲酰胺(Fukatsu,H.,Hashimoto,Y.,Goda,M.,Higashibata,H.和Kobayashi,M.(2004 ),美国国家科学院学报101,13726–13731)。在这项研究中,我们发现了一种参与异腈代谢第一步的酶,即异腈水合酶,该酶将异腈水合为相应的N-取代的甲酰胺。首先,我们研究了生产异腈水合酶的最佳培养条件。当在含有N-苄基甲酰胺的营养培养基中培养Pa.pascens F164时,可获得最高的酶活性。纯化,表征并鉴定该节杆菌异腈水合酶,并将其与恶臭假单胞菌N19-2异腈水合酶(InhA)进行比较,后者是目前唯一报道的一种。发现节杆菌异腈水合酶的分子量约为530 kDa,由12个相同的亚基组成。环己基异氰化物的表观Km值为0.95±0.05mm。当在含有异腈作为唯一碳和氮源的培养基中培养时,pascens F164生长并显示出异腈水合酶和N-取代的甲酰胺甲酰化酶的活性。但是,在分别以甘油和(NH4)2SO4为唯一碳源和氮源的培养基中培养时未观察到两种酶的活性。这些发现表明,节杆菌酶是一种可诱导的酶,可能参与了异腈的同化和/或解毒。此外,节杆菌酶的基因克隆显示该酶与InhA之间没有序列相似性。它们的性质和特征的比较表明,这两种酶在生化,免疫学和结构上彼此不同。因此,我们发现了一种新的异腈水合酶,名为InhB。

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