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在草生欧文氏菌中,单一的环己二烯基脱水酶决定了通向L-苯丙氨酸的两条独立途径之一的预苯酸脱水酶和莽草酸脱氢酶组分。

A single cyclohexadienyl dehydratase specifies the prephenate dehydratase and arogenate dehydratase components of one of two independent pathways to L-phenylalanine in Erwinia herbicola.

作者信息

Xia T H, Ahmad S, Zhao G S, Jensen R A

机构信息

Department of Microbiology and Cell Science, University of Florida, Gainesville 32611.

出版信息

Arch Biochem Biophys. 1991 May 1;286(2):461-5. doi: 10.1016/0003-9861(91)90066-r.

Abstract

Dual biosynthetic pathways diverge from prephenate to L-phenylalanine in Erwinia herbicola, the unique intermediates of these pathways being phenylpyruvate and L-arogenate. After separation from the bifunctional P-protein (one component of which has prephenate dehydratase activity), the remaining prephenate dehydratase activity could not be separated from arogenate dehydratase activity throughout fractionation steps yielding a purification of more than 1200-fold. The ratio of activities was constant after removal of the P-protein, and the two dehydratase activities were stable during purification. Hence, the enzyme is a cyclohexadienyl dehydratase. The native enzyme has a molecular mass of 73 kDa and is a tetramer made up of identical 18-kDa subunits. Km values of 0.17 mM and 0.09 mM were calculated for prephenate and L-arogenate, respectively. L-Arogenate inhibited prephenate dehydratase competitively with respect to prephenate, whereas prephenate inhibited arogenate dehydratase competitively with respect to L-arogenate. Thus, the enzyme has a common catalytic site for utilization of prephenate or L-arogenate as alternative substrates. This is the first characterization of a purified monofunctional cyclohexadienyl dehydratase.

摘要

在草生欧文氏菌中,从预苯酸到L-苯丙氨酸存在两条不同的生物合成途径,这些途径的独特中间体是苯丙酮酸和L-预苯酸。从双功能P蛋白(其一个组分具有预苯酸脱水酶活性)分离后,在整个分级分离步骤中,剩余的预苯酸脱水酶活性无法与预苯酸脱水酶活性分离,纯化倍数超过1200倍。去除P蛋白后,活性比保持恒定,并且两种脱水酶活性在纯化过程中保持稳定。因此,该酶是一种环己二烯基脱水酶。天然酶的分子量为73 kDa,是由相同的18 kDa亚基组成的四聚体。预苯酸和L-预苯酸的Km值分别计算为0.17 mM和0.09 mM。L-预苯酸相对于预苯酸竞争性抑制预苯酸脱水酶,而预苯酸相对于L-预苯酸竞争性抑制预苯酸脱水酶。因此,该酶具有一个共同的催化位点,可将预苯酸或L-预苯酸用作替代底物。这是对纯化的单功能环己二烯基脱水酶的首次表征。

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