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Protein binding in deactivation of ferrylmyoglobin by chlorogenate and ascorbate.

机译:绿原酸和抗坏血酸使铁肌红蛋白失活时的蛋白质结合。

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Kinetics of reduction of iron(IV) in ferrylmyoglobin by chlorogenate in neutral or moderately acidic aqueous solutions (0.16 M NaCl) to yield metmyoglobin was studied using stopped flow absorption spectroscopy. The reaction occurs by direct bimolecular electron transfer with (2.7 +/- 0.3) x 10(3) M(-)(1).s(-)(1) at 25.0 degrees C (DeltaH( )(#) = 59 +/- 6 kJ.mol(-)(1), DeltaS(#) = 15 +/- 22 J. mol(-)(1).K(-)(1)) for protonated ferrylmyoglobin (pK(a) = 4.95) and with 216 +/- 50 M(-)(1).s(-)(1) (DeltaH( )(#) = 73 +/- 8 kJ. mol(-)(1), DeltaS( )(#) = 41 +/- 30 J.mol(-)(1).K(-)(1)) for nonprotonated ferrylmyoglobin in parallel with reduction of a chlorogenate/ferrylmyoglobin complex by a second chlorogenate molecule with (8.6 +/- 1.1) x 10(2) M(-)(1).s(-)(1) (DeltaH( )(#) = 74 +/- 8 kJ.mol(-)(1), DeltaS( )(#) = 59 +/- 28 J.mol(-)(1).K(-)(1)) for protonated ferrylmyoglobin and with 61 +/- 9 M(-)(1).s(-)(1) (DeltaH( )(#) = 82 +/- 12 kJ.mol(-)(1), DeltaS( )(#) = 63 +/- 41 J. mol(-)(1).K(-)(1)) for nonprotonated ferrylmyoglobin. Previously published data on ascorbate reduction of ferrylmyoglobin are reevaluated according to a similar mechanism. For both protonated and nonprotonated ferrylmyoglobin the binding constant of chlorogenate is approximately 300 M(-)(1), and the modulation of ferrylmyoglobin as an oxidant by chlorogenate (or ascorbate) leads to a novel antioxidant interaction for reduction of ferrylmyoglobin by ascorbate in mixtures with chlorogenate.
机译:使用停止流吸收光谱法研究了在中性或中度酸性水溶液(0.16 M NaCl)中通过氯酸盐还原亚铁血红蛋白中铁(IV)的动力学,从而产生了肌红蛋白。该反应通过在25.0摄氏度下以(2.7 +/- 0.3)x 10(3)M(-)(1).s(-)(1)直接双分子电子转移发生(DeltaH()(#)= 59 + /-6 kJ.mol(-)(1),DeltaS(#)= 15 +/- 22 J. mol(-)(1).K(-)(1))对于质子化铁肌红蛋白(pK(a)= 4.95)和216 +/- 50 M(-)(1).s(-)(1)(DeltaH()(#)= 73 +/- 8 kJ。mol(-)(1),DeltaS() (#)= 41 +/- 30 J.mol(-)(1).K(-)(1))对于非质子化的肌铁蛋白血红蛋白,同时用(8.6 + / -1.1)x 10(2)M(-)(1).s(-)(1)(DeltaH()(#)= 74 +/- 8 kJ.mol(-)(1),DeltaS()( #)= 59 +/- 28 J.mol(-)(1).K(-)(1))对于质子化铁蛋白珠蛋白并具有61 +/- 9 M(-)(1).s(-)(1 )(DeltaH()(#)= 82 +/- 12 kJ.mol(-)(1),DeltaS()(#)= 63 +/- 41 J.mol(-)(1).K(-) (1))用于非质子化的铁蛋白珠蛋白。根据类似的机制,重新评估了先前发表的有关铁蛋白铁蛋白抗坏血酸还原的数据。对于质子化和非质子化的feryolmyoglobin而言,绿原酸盐的结合常数约为300 M(-)(1),而ferrylmyoglobin作为氧化剂被绿原酸(或抗坏血酸盐)的调节导致一种新颖的抗氧化剂相互作用,从而通过混合物中的抗坏血酸来还原ferrylmyoglobin含氯酸盐。

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