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胱硫醚酶磷酸吡哆醛基团的反应活性

Reactivity of the phosphopyridoxal groups of cystathionase.

作者信息

Beeler T, Churchich J E

出版信息

J Biol Chem. 1976 Sep 10;251(17):5267-71.

PMID:8458
Abstract

Aminooxyacetate and alpha-amino-gamma-aminooxybutyrate (canaline) react specifically with the P-pyridoxal groups of cystathionase to produce characteristic changes in the absorption and fluorescence properties of the bound cofactor. The increase in fluorescence at 450 nm was used to monitor the reaction. Aminooxyacetate attacks the Schiff base linkage of the enzyme several times faster (k1 = 3700 M-1 min-1 and k2 = 1000 M-1 min-1) than it attacks the aldehydic carbon of free P-pyridoxal (k = 290 M-1 min-1). Similar results were obtained with canaline. The kinetic studies indicate that a Schiff base linkage in the enzyme cystathionase should offer direct kinetic advantage during the reaction between the substrate and the cofactor. It is also shown that the inhibitor L-alpha-gamma-aminobutyrate reacts with bound P-pyridoxal to form free P-pyridoxamine. The rate of formation of P-pyridoxamine parallels the rate of enzyme inactivation.

摘要

氨基氧乙酸和α-氨基-γ-氨基氧基丁酸(刀豆氨酸)与胱硫醚酶的磷酸吡哆醛基团特异性反应,使结合辅因子的吸收和荧光特性发生特征性变化。利用450nm处荧光的增加来监测反应。氨基氧乙酸攻击酶的席夫碱键的速度比攻击游离磷酸吡哆醛的醛基碳的速度快几倍(k1 = 3700 M-1 min-1和k2 = 1000 M-1 min-1,而k = 290 M-1 min-1)。刀豆氨酸也得到了类似的结果。动力学研究表明,酶胱硫醚酶中的席夫碱键在底物与辅因子反应过程中应具有直接的动力学优势。还表明抑制剂L-α-γ-氨基丁酸与结合的磷酸吡哆醛反应形成游离的磷酸吡哆胺。磷酸吡哆胺的形成速率与酶失活速率平行。

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