...
首页> 外文期刊>Archives of Biochemistry and Biophysics >Laser flash photolysis experiments on the effects of freezing and salt addition on intramolecular electron transfer within one-electron reduced ascorbate oxidase
【24h】

Laser flash photolysis experiments on the effects of freezing and salt addition on intramolecular electron transfer within one-electron reduced ascorbate oxidase

机译:激光闪光光解实验研究冷冻和添加盐对单电子还原抗坏血酸氧化酶内分子内电子转移的影响

获取原文
获取原文并翻译 | 示例

摘要

Laser flash photolysis has been used to investigate the effects of freezing protein solutions and of adding various salts on the kinetics of one-electron photoreduction by 5-deazariboflavin semiquinone (5-DRFH') of oxidized ascorbate oxidase (AO) from zucchini in 100 mM phosphate buffer (pH 7.0). The initial reaction between oxidized AO and 5-DRFH' is quite rapid (k similar to 10(6) M(-1) s(-1)) and occurs at the blue Type I Cu center. Subsequent to this, a slower, protein concentration-independent intramolecular reoxidation of the Type I Cu is observed, with k(ET) similar to 150 S-1, resulting in 40-50% reoxidation of the blue Cu center and the establishment of an electron transfer (ET) equilibrium between the various Cu centers in AO. When such a sample of AO was frozen overnight at -30 degrees C, flash photolysis of the thawed sample showed no effect on the kinetics of reduction of the Type I Cu by 5-DRFH'. However, the rate constant for intramolecular ET decreased to a value of 2.7 s(-1), with only 20% reoxidation of the Type I center. Reduction of the enzyme with ascorbic acid, followed by O-2 oxidation, resulted in restoration of rapid intramolecular reoxidation (k(ET) = 130 S-1) with 33% of the Type I Cu reduced by 5-DRFH' being reoxidized. These results are consistent with previous work which showed that samples of AO with initially low activity can be reactivated by ascorbic acid turnover in the presence of O-2. When AO was frozen in the presence of ascorbic acid, similar inhibition of intramolecular ET was obtained, whereas upon turnover of this sample by further addition of ascorbic acid and exposure to O-2 activity was not restored. The effects of addition of (NH4)(2)SO4, Na2SO4, NH4Cl, NaCl, KCl, and KF on the kinetics of Type I Cu reduction by 5-deazariboflavin semiquinone and on the subsequent intramolecular ET were also examined. A twofold increase in the bimolecular rate constant for reduction of the Type I Cu was observed for the two sodium salts at high concentrations (500 mM), Intramolecular ET was also significantly affected upon addition of all three chloride salts. Although the intramolecular ET rate constant was not altered, the fraction of reduced Type I Cu reoxidized by the trinuclear cluster decreased with increasing Cl- concentration, regardless of the cation. Total inhibition of intramolecular ET was observed at a significantly lower concentration of RF than observed with the CL(-) salts. Sulfate ion had no effect on either parameter. These changes are thus ion specific, suggesting that they are related to ion binding by the protein, possibly at one of the coppers of the trinuclear cluster. (C) 1997 Academic Press.
机译:激光闪光光解法已被用来研究冷冻蛋白质溶液和添加各种盐对100 mM西葫芦中抗坏血酸氧化酶(AO)的5-deazariboflavin半醌(5-DRFH')单电子光还原动力学的影响。磷酸盐缓冲液(pH 7.0)。氧化的AO和5-DRFH'之间的初始反应非常快(k类似于10(6)M(-1)s(-1)),发生在蓝色的I型Cu中心。随后,观察到I型Cu的较慢,不依赖蛋白质浓度的分子内再氧化,其k(ET)类似于150 S-1,导致蓝色Cu中心发生40-50%的再氧化并建立了一个AO中各个Cu中心之间的电子转移(ET)平衡。当将这种AO样品在-30℃下冷冻过夜时,解冻样品的快速光解对5-DRFH'还原I型Cu的动力学没有影响。但是,分子内ET的速率常数降低到2.7 s(-1),I型中心仅20%的再氧化。用抗坏血酸还原酶,然后进行O-2氧化,可恢复快速的分子内再氧化(k(ET)= 130 S-1),其中被5-DRFH'还原的I型Cu中有33%被再氧化。这些结果与以前的工作一致,后者表明在O-2存在的情况下,抗坏血酸周转可以重新活化活性较低的AO样品。当在抗坏血酸存在下冷冻AO时,获得了类似的分子内ET抑制作用,而通过进一步添加抗坏血酸使该样品更替并恢复了对O-2活性的暴露。还检查了添加(NH4)(2)SO4,Na2SO4,NH4Cl,NaCl,KCl和KF对5-deazariboflavinvin半醌还原I型Cu动力学以及随后的分子内ET的影响。在高浓度(500 mM)下,观察到两种钠盐的双分子速率常数增加了两倍,从而降低了I型Cu的含量。加入所有三种氯化物盐后,分子内ET也受到显着影响。尽管分子内ET速率常数未改变,但无论阳离子如何,三核簇重新氧化的还原型I Cu的分数均随Cl浓度的增加而降低。在RF浓度显着低于用CL(-)盐观察到的浓度下,观察到了分子内ET的总抑制作用。硫酸根离子对任何一个参数都没有影响。因此,这些变化是离子特异性的,表明它们与蛋白质的离子结合有关,可能在三核簇的铜之一上。 (C)1997学术出版社。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号