首页> 外文期刊>Journal of Agricultural and Food Chemistry >Pseudoperoxidase activity of myoglobin: kinetics and mechanism of the peroxidase cycle of myoglobin with H2O2 and 2,2-azino-bis(3-ethylbenzthiazoline-6-sulfonate) as substrates.
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Pseudoperoxidase activity of myoglobin: kinetics and mechanism of the peroxidase cycle of myoglobin with H2O2 and 2,2-azino-bis(3-ethylbenzthiazoline-6-sulfonate) as substrates.

机译:肌红蛋白的伪过氧化物酶活性:以H2O2和2,2-叠氮基双(3-乙基苯并噻唑啉-6-磺酸盐)为底物的肌红蛋白的过氧化物酶动力学和机理。

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Using 2,2-azino-bis(3-ethylbenzthiazoline-6-sulfonate) (ABTS) as substrate, it has been shown that the increased peroxidase activity for decreasing pH of myoglobin activated by hydrogen peroxide is due to a protonization of ferrylmyoglobin, MbFe(IV)=O, facilitating electron transfer from the substrate and corresponding to pK(a) approximately 5.2 at 25.0 degrees C and ionic strength 0.16, rather than due to specific acid catalysis. On the basis of stopped flow absorption spectroscopy with detection of the radical cation ABTS(.+), the second-order rate constant and activation parameters for the reaction between MbFe(IV)=O and ABTS were found to have the values k = 698 +/- 32 M(-1) s(-1), DeltaH# = 66 +/- 4 kJ mol(-1), and DeltaS# = 30 +/- 15 J mol(-1) K(-1) at 25.0 degrees C and physiological pH (7.4) and ionic strength (= 0.16 M NaCl). At a lower pH (5.8) corresponding to the conditions in meat, values were found as follows: k = 3.5 +/- 0.3 x 10(4) M(-1) s(-1), DeltaH# = 31 +/- 6 kJ mol(-1), and DeltaS#= -53 +/- 19 J mol(-1) K(-1), indicative of a shift from outersphere electron transfer to an innersphere mechanism. For steady state assay conditions, this shift is paralleled by a shift from saturation kinetics at pH 7.4 to first-order kinetics for H2O2 as substrate at pH 5.8. In contrast, the activation reaction between myoglobin and hydrogen peroxide was found at 25.0 degrees C to be slow and independent of pH with values of 171 +/- 7 and 196 +/- 19 M(-1) s(-1) found at physiological and meat pH, respectively, as determined by sequential stopped flow spectroscopy, from which a lower limit of k = 6 x 10(5) M(-1) s(-1) for the reaction between perferrylmyoglobin, .MbFe(IV)=O, and ABTS could be estimated. As compared to the traditional peroxidase assay, a better characterization of pseudoperoxidase activity of heme pigments and their denatured or proteolyzed forms is thus becoming possible, and specific kinetic effects on activation, substrate oxidation, or shift in rate determining steps may be detected.
机译:使用2,2-叠氮基双(3-乙基苯并噻唑啉-6-磺酸盐)(ABTS)作为底物,已显示出过氧化氢活化的降低肌红蛋白pH值的过氧化物酶活性增加是由于铁肌红蛋白MbFe的质子化所致。 (IV)= O,促进电子从底物转移,并且对应于在25.0℃和离子强度为0.16的pK(a)约为5.2,而不是由于特定的酸催化作用。在检测自由基阳离子ABTS(。+)的停止流动吸收光谱的基础上,发现MbFe(IV)= O与ABTS之间反应的二级速率常数和活化参数为k = 698 +/- 32 M(-1)s(-1),DeltaH#= 66 +/- 4 kJ mol(-1)和DeltaS#= 30 +/- 15 J mol(-1)K(-1)在25.0摄氏度和生理pH(7.4)和离子强度(= 0.16 M NaCl)的条件下。在较低pH(5.8)下对应于肉的条件,得出以下值:k = 3.5 +/- 0.3 x 10(4)M(-1)s(-1),DeltaH#= 31 +/- 6 kJ mol(-1)和DeltaS#= -53 +/- 19 J mol(-1)K(-1),表明从外层电子转移到内层机理。对于稳态测定条件,此位移与从pH 7.4的饱和动力学到以pH 5.8的底物H2O2的一级动力学的位移平行。相反,发现肌红蛋白和过氧化氢之间的活化反应在25.0摄氏度下较慢,并且不受pH值的影响,在171 +/- 7和196 +/- 19 M(-1)s(-1)处发现。生理和肉类pH值,分别由连续停止流光谱法确定,从该值可以看出,下泛肌血红蛋白,.MbFe(IV)之间的反应的下限k = 6 x 10(5)M(-1)s(-1) = O,可以估计ABTS。与传统的过氧化物酶测定相比,血红素色素的伪过氧化物酶活性及其变性或蛋白水解形式的更好的表征因此成为可能,并且可以检测到对活化,底物氧化或速率确定步骤的转变的特定动力学效应。

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