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Inhibitory Kinetics of p-Substituted Benzaldehydes on Polyphenol Oxidase from the Fifth Instar of Pieris Rapae L.
作者姓名:王勤  柯莉娜  薛超彬  罗万春  陈清西
作者单位:Key Laboratory of Ministry of Education for Cell Biology and Tumor Cell Engineering School of Life Sciences Xiamen University,Key Laboratory of Ministry of Education for Cell Biology and Tumor Cell Engineering School of Life Sciences Xiamen University,Key Laboratory of Pesticide Toxicology and Application Technique College of Plant Protection Shandong Agriculture University,Key Laboratory of Pesticide Toxicology and Application Technique College of Plant Protection Shandong Agriculture University,Key Laboratory of Ministry of Education for Cell Biology and Tumor Cell Engineering School of Life Sciences Xiamen University,Xiamen 361005 China,Xiamen 361005 China,Taian 271018 China,Taian 271018 China,Xiamen 361005 China
摘    要:Polyphenol oxidase (PPO) is the enzyme responsible for enzymatic browning during the growth of insects. It is also involved in defense reactions and is related with immunities in insects. PPO, a metalloenzyme oxidase, catalyzes the oxidation of ο-diphenol to ο-quinone. The present paper de- scribes the effects of benzaldehyde and its p-substituted derivatives on the activity of PPO from the fifth instar of Pieris rapae L. PPO from the fifth instar of Pieris rapae L. was purified using ammonium sulfate fractionation and chromatography on Sephadex G-100. The enzyme kinetics was characterized using L-3,4-dihydroxyphenylalanine (L-DOPA) as substrate. The results show that benzaldehyde, p- hydroxybenzaldehyde, p-chlorobenzaldehyde, and p-cyanobenzaldehyde can inhibit the PPO activity for the oxidation of L-DOPA. The inhibitor concentration leading to 50% activity lost, IC50, was esti- mated to be 5.90, 5.62, 2.83, and 2.91 mmol/L for the four tested inhibitors, respectively. Kinetic analy- ses show that the inhibitory effects of these compounds are reversible. Benzaldehyde, p- hydroxybenzaldehyde, and p-chlorobenzaldehyde are noncompetitive inhibitors while p-cyano- benzaldehyde is a mixed-type inhibitor. The inhibition constants were determined for all four inhibitors. p-chlorobenzaldehyde and p-cyanobenzaldehyde were more potent inhibitors than the other com- pounds. These results provide a basis for developing PPO inhibition-based pesticides.

关 键 词:动力学  多酚氧化酶  苯甲醛  抑制作用
收稿时间:9 March 2006
修稿时间:2006-03-09

Inhibitory Kinetics of p-Substituted Benzaldehydes on Polyphenol Oxidase from the Fifth Instar of Pieris Rapae L.
WANG Qin,KE Lina,XUE Chaobin,LUO Wanchun,CHEN Qingxi.Inhibitory Kinetics of p-Substituted Benzaldehydes on Polyphenol Oxidase from the Fifth Instar of Pieris Rapae L.[J].Tsinghua Science and Technology,2007,12(4):400-404.
Authors:WANG Qin  KE Lina  XUE Chaobin  LUO Wanchun  CHEN Qingxi
Institution:1. Key Laboratory of Ministry of Education for Cell Biology and Tumor Cell Engineering, School of Life Sciences, Xiamen University, Xiamen 361005, China; 2. Key Laboratory of Pesticide Toxicology and Application Technique, College of Plant Protection, Shandong Agriculture University, Taian 271018, China
Abstract:Polyphenol oxidase (PPO) is the enzyme responsible for enzymatic browning during the growth of insects. It is also involved in defense reactions and is related with immunities in insects. PPO,a metalloenzyme oxidase, catalyzes the oxidation of o-diphenol to o-quinone. The present paper describes the effects of benzaldehyde and its p-substituted derivatives on the activity of PPO from the fifth instar of Pieris rapae L. PPO from the fifth instar of Pieris rapae L. was purified using ammonium sulfate fractionation and chromatography on Sephadex G-100. The enzyme kinetics was characterized using L-3,4-dihydroxyphenylalanine (L-DOPA) as substrate. The results show that benzaldehyde, p-hydroxybenzaldehyde, p-chlorobenzaldehyde, and p-cyanobenzaldehyde can inhibit the PPO activity for the oxidation of L-DOPA. The inhibitor concentration leading to 50% activity lost, IC50, was estimated to be 5.90, 5.62, 2.83, and 2.91 mmol/L for the four tested inhibitors, respectively. Kinetic analyses show that the inhibitory effects of these compounds are reversible. Benzaldehyde, p-hydroxybenzaldehyde, and p-chlorobenzaldehyde are noncompetitive inhibitors while p-cyanobenzaldehyde is a mixed-type inhibitor. The inhibition constants were determined for all four inhibitors.p-chlorobenzaldehyde and p-cyanobenzaldehyde were more potent inhibitors than the other compounds. These results provide a basis for developing PPO inhibition-based pesticides.
Keywords:Pieris rapae L    the fifth instar  polyphenol oxidase  benzaldehyde  p-substituted derivatives  inhibition  inhibitory type  kinetics  mechanism
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