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A comparative reactivity study of microperoxidases based on hemin, mesohemin and deuterohemin

机译:基于血红素,中血红素和氘血红素的微过氧化物酶的比较反应性研究

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摘要

Three microperoxidases--hemin-6(7)-gly-gly-his methyl ester (HGGH), mesohemin-6(7)-gly-gly-his methyl ester (MGGH) and deuterohemin-6(7)-gly-gly-his methyl ester (DGGH)--have been prepared as models for heme-containing peroxidases by condensation of glycyl-glycyl-L-histidine methyl ester with the propionic side chains of hemin, mesohemin and deuterohemin, respectively. The three microperoxidases differ in two substituents, R, of the protoporphyrin IX framework (HGGH: R=vinyl, MGGH: R=ethyl, DGGH: R=H). X-band and high field EPR spectra show that the microperoxidases exhibit spectroscopic properties similar to those of metmyoglobin, i.e. a high spin ferric S=5/2 signal at g(perpendicular)=6 and g parallel)=2 and an estimated D value of 7.5+/-1cm(-1). The catalytic activities of the microperoxidases towards K4[Fe(CN)6], L-tyrosine methyl ester and 2,2'-azino(bis(3-ethylbenzothiazoline-6-sulfonic acid)) (ABTS) have been investigated. It was found that all three microperoxidases exhibit peroxidase activity and that the reactions follow the generally accepted peroxidase reaction scheme [Biochem. J. 145 (1975) 93-103] with the exception that the initial formation of a Compound I analogue is the rate-limiting step for the whole process. The general activity trend was found to be MGGH approximately DGGH>HGGH. For each microperoxidase, DFT calculations (B3LYP) were made on the reactions of compounds 0, I and II with H+, e- and H+ + e-, respectively, in order to probe the possible relationship between the nature of the 2- and 4-substituents of the hemin and the observed reactivity. The computational modeling indicates that the relative energy differences are very small; solvation and electrostatic effects may be factors that decide the relative activities of the microperoxidases.
机译:三种微过氧化物酶-hemin-6(7)-gly-gly-his甲酯(HGGH),meshehemin-6(7)-gly-gly-his甲酯(MGGH)和deuterohemin-6(7)-gly-gly -他的甲酯(DGGH)-已通过缩水甘油基-甘氨酰基-L-组氨酸甲酯分别与血红素,中血红素和氘血红素的丙酸侧链缩合而制备为含血红素的过氧化物酶的模型。三种微过氧化物酶的不同之处在于原卟啉IX骨架的两个取代基R(HGGH:R =乙烯基,MGGH:R =乙基,DGGH:R = H)。 X波段和高场EPR光谱表明,微过氧化物酶的光谱性质类似于肌红蛋白,即在g(垂直)= 6和g平行)= 2时高自旋三价铁S = 5/2信号和估计的D值7.5 +/- 1cm(-1)。研究了过氧化物酶对K4 [Fe(CN)6],L-酪氨酸甲酯和2,2'-叠氮基(双(3-乙基苯并噻唑啉-6-磺酸))(ABTS)的催化活性。已发现所有三种微过氧化物酶均表现出过氧化物酶活性,并且该反应遵循普遍接受的过氧化物酶反应方案[Biochem.Chem.Soc。,2004,6,2,3]。 J. 145(1975)93-103],不同之处在于化合物I类似物的初始形成是整个过程的限速步骤。发现总体活动趋势为MGGH约DGGH> HGGH。对于每种微过氧化物酶,分别对化合物0,I和II与H +,e-和H + + e-的反应进行DFT计算(B3LYP),以探究2-和4的性质之间的可能关系。 -血红素的取代基和观察到的反应性。计算模型表明,相对能量差很小。溶剂化作用和静电作用可能是决定微过氧化物酶相对活性的因素。

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