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A New Synthetic Route to N-Benzyl Carboxamides through the Reverse Reaction of N-Substituted Formamide Deformylase

机译:N取代的甲酰胺甲酰化酶逆反应合成N-苄甲酰胺的新合成途径

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Previously, we isolated a new enzyme, N -substituted formamide deformylase, that catalyzes the hydrolysis of N -substituted formamide to the corresponding amine and formate (H. Fukatsu, Y. Hashimoto, M. Goda, H. Higashibata, and M. Kobayashi, Proc. Natl. Acad. Sci. U. S. A. 101:13726–13731, 2004, doi:10.1073/pnas.0405082101). Here, we discovered that this enzyme catalyzed the reverse reaction, synthesizing N -benzylformamide (NBFA) from benzylamine and formate. The reverse reaction proceeded only in the presence of high substrate concentrations. The effects of pH and inhibitors on the reverse reaction were almost the same as those on the forward reaction, suggesting that the forward and reverse reactions are both catalyzed at the same catalytic site. Bisubstrate kinetic analysis using formate and benzylamine and dead-end inhibition studies using a benzylamine analogue, aniline, revealed that the reverse reaction of this enzyme proceeds via an ordered two-substrate, two-product (bi-bi) mechanism in which formate binds first to the enzyme active site, followed by benzylamine binding and the subsequent release of NBFA. To our knowledge, this is the first report of the reverse reaction of an amine-forming deformylase. Surprisingly, analysis of the substrate specificity for acids demonstrated that not only formate, but also acetate and propionate (namely, acids with numbers of carbon atoms ranging from C_(1) to C_(3)), were active as acid substrates for the reverse reaction. Through this reaction, N -substituted carboxamides, such as NBFA, N -benzylacetamide, and N -benzylpropionamide, were synthesized from benzylamine and the corresponding acid substrates.
机译:以前,我们分离出一种新的酶N-取代的甲酰胺甲酰化酶,该酶催化N-取代的甲酰胺水解为相应的胺和甲酸酯(H. Fukatsu,Y。Hashimoto,M。Goda,H.Higashibata和M. Kobayashi ,美国国家科学院学报101:13726–13731,2004,doi:10.1073 / pnas.0405082101)。在这里,我们发现该酶催化了逆反应,由苄胺和甲酸酯合成了N-苄基甲酰胺(NBFA)。仅在高底物浓度下才进行逆反应。 pH和抑制剂对逆向反应的影响与正向反应几乎相同,这表明正向和反向反应均在相同的催化位点进行催化。使用甲酸和苄胺的双底物动力学分析以及使用苄胺类似物苯胺的无死抑制研究表明,该酶的逆反应通过有序的两种底物,两种产物(bi-bi)机理进行,其中甲酸首先结合到酶活性位点,然后结合苄胺并随后释放NBFA。据我们所知,这是形成胺的甲酰化酶逆反应的第一个报道。令人惊讶的是,对酸的底物特异性的分析表明,不仅甲酸,而且乙酸盐和丙酸(即碳原子数为C_(1)至C_(3)的酸)都具有相反的酸性底物活性。反应。通过该反应,由苄胺和相应的酸底物合成了N-取代的羧酰胺,例如NBFA,N-苄基乙酰胺和N-苄基丙酰胺。

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