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酰肼合成:酰胺酶的新型底物特异性。

Hydrazide synthesis: novel substrate specificity of amidase.

作者信息

Kobayashi M, Goda M, Shimizu S

机构信息

Division of Applied Life Sciences, Graduate School of Agriculture, Kyoto University, Japan.

出版信息

Biochem Biophys Res Commun. 1999 Mar 16;256(2):415-8. doi: 10.1006/bbrc.1999.0342.

Abstract

The amidase from Rhodococcus rhodochrous J1, which hydrolyses amide to acid and ammonia, was found to catalyze the synthesis of hydrazide using hydrazine as a substrate. This is the first report on the hydrazide synthesis through enzymatic reactions. The enzyme also acted on benzoic acid in the presence of hydrazine, yielding benzoic hydrazide. Together with the finding that benzoic hydrazide was converted into benzoic acid (when it was used as a substrate in the absence of hydrazine), these unique characteristics suggest that the reaction route for the formation of the acid from the hydrazide and that of the hydrazide from the acid are reversible to each other via the acyl-enzyme. Not only aromatic hydrazides but also aliphatic hydrazides were synthesized from the corresponding amides and hydrazine.

摘要

红平红球菌J1中的酰胺酶可将酰胺水解为酸和氨,现已发现该酶能以肼为底物催化合成酰肼。这是关于通过酶促反应合成酰肼的首次报道。在肼存在的情况下,该酶也作用于苯甲酸,生成苯甲酰肼。再加上苯甲酰肼在不存在肼时用作底物时会转化为苯甲酸这一发现,这些独特特性表明,酰肼形成酸以及酸形成酰肼的反应途径通过酰基酶彼此可逆。不仅芳香族酰肼,脂肪族酰肼也可由相应的酰胺和肼合成。

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