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Influence of reagents reacting with metal thiol and amino sites of catalytic activity and l-phenylalanine inhibition of rat intestinal alkaline phosphatase

机译:试剂与金属硫醇和氨基部位反应的催化活性和对苯丙氨酸抑制大鼠肠道碱性磷酸酶的影响

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摘要

1. Studies on the inactivation of rat intestinal alkaline phosphatase by several metal-binding agents, namely EDTA, 8-hydroxyquinoline, pyridine-2,6-dicarboxylic acid, αα′-bipyridyl, o-phenanthroline and sodium cyanide, indicated the functional role of a metal, probably zinc, in the catalysis. The metal ligands lowered stereospecific uncompetitive inhibition of the enzyme by l-phenylalanine by an extent that paralleled the decline in enzyme activity. 2. The thiol reagents p-hydroxymercuribenzoate, iodoacetamide and iodine inactivated rat intestinal phosphatase. The enzyme could be protected from inactivation by either cysteine or substrate. The l-phenylalanine inhibition remained unchanged only in the presence of moderately inactivating concentrations of the thiol reagents. 3. Inactivation of the enzyme by the amino-group-blocking reagent, O-methylisourea, provided ample evidence for the participation in the catalysis of the ∈-amino group of lysine. At the same time, l-phenylalanine inhibition remained unaltered even when the enzyme was strongly inactivated. This ∈-amino-group-blocked enzyme exhibited no change in migration in starch gel, in contrast with enzyme treated with acetic anhydride, formaldehyde or succinic anhydride. The Michaelis constant of the enzyme was enhanced by such modifications, but the optimum pH remained the same. 4. d-Phenylalanine acted as a competitive or `co-operative' activator for intestinal alkaline phosphatase after it had been modified by acetylation.
机译:1.几种金属结合剂EDTA,8-羟基喹啉,吡啶-2,6-二羧酸,αα'-联吡啶,邻菲咯啉和氰化钠对大鼠肠道碱性磷酸酶的灭活研究表明其功能性作用催化中的金属,可能是锌。金属配体降低了1-苯丙氨酸对酶的立体特异性非竞争性抑制,其程度与酶活性的下降平行。 2.硫醇试剂对羟基巯基苯甲酸酯,碘乙酰胺和碘灭活大鼠肠磷酸酶。半胱氨酸或底物可保护该酶免于灭活。仅在适度灭活浓度的硫醇试剂存在下,1-苯丙氨酸抑制作用保持不变。 3.氨基封闭剂O-甲基异脲使酶失活,为赖氨酸的ε-氨基的催化作用提供了充分的证据。同时,即使该酶被强烈灭活,1-苯丙氨酸的抑制作用也没有改变。与用乙酸酐,甲醛或丁二酸酐处理的酶相反,该ε-氨基基团封闭的酶在淀粉凝胶中的迁移没有变化。通过这种修饰,酶的米氏常数得以提高,但最佳pH值保持不变。 4. d-苯丙氨酸经乙酰化修饰后,可作为肠道碱性磷酸酶的竞争性或“合作”激活剂。

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