...
首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >Kinetics of inter- and intramolecular electron transfer of Pseudomonas nautica cytochrome cd_1 nitrite reductase: regulation of the NO-bound end product
【24h】

Kinetics of inter- and intramolecular electron transfer of Pseudomonas nautica cytochrome cd_1 nitrite reductase: regulation of the NO-bound end product

机译:天然假单胞菌细胞色素cd_1亚硝酸还原酶的分子间和分子内电子转移动力学:NO结合终产物的调节

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

The intermolecular electron transfer kinetics between nitrite reductase (NiR, cytochrome cd_1) isolated from seudomonas nautica and three cytochromes c isolated from the same strain, as well as the intramolecular electron transfer between NiR heme c and NiR heme d_1, were investigated by cyclic voltammetry. All cytochromes (cytochrome c_(552), cytochrome c_(553) and cytochrome c_(553(548)) exhibited well-behaved electrochemistry. The individual diffusion coefficients and mid-point redox potentials were determined. Under the experimental conditions, only cytochrome c_(552) established a rapid electron transfer with NiR. At acidic pH, the intermolecular electron transfer (cytochrome c_(552red)→NiR heme c_(ox)) is a second-order reaction with a rate constant (K_2) of 4.1 ± 0.1*10~5 M~(-1) s~(-1) (pH = 6.3 and 100 mM NaCl). Under these conditions, the intermolecular reaction represents the rate-limiting step. A minimum estimate of 33 s~(-1) could be determined for the first-order rate constant (K_1) of the intramolecular electron transfer reaction NiR heme c_(red)→NiR heme d_(lox). The pH dependence of K_2 values was investigated at pH values ranging from 5.8 to 8.0. When the pH is progressively shifted towards basic values, the rate constant of the intramolecular electron transfer reaction NiR heme c_(red)→NiR heme d_(lox) decreases gradually to a point where it becomes rate limiting. At pH 8.0 we determined a value of 1.4 ± 0.7 s~(-1), corresponding to a K_2 value of 2.2 199L?1.1 * 10~4 M~(-1) s~(-1) for the intermolecular step. The physiological relevance of these results is discussed with a particular emphasis on the proposed mechanism of "dead-end product" formation.
机译:通过循环伏安法研究了从水产假单胞菌分离的亚硝酸还原酶(NiR,细胞色素cd_1)和从同一菌株分离的三种细胞色素c之间的分子间电子转移动力学,以及NiR血红素c和NiR血红素d_1之间的分子内电子转移。所有细胞色素(细胞色素c_(552),细胞色素c_(553)和细胞色素c_(553(548))均表现出良好的电化学性能,并确定了各自的扩散系数和中点氧化还原电位,在实验条件下,仅细胞色素c_ (552)建立了NiR的快速电子转移。在酸性pH下,分子间电子转移(细胞色素c_(552red)→NiR血红素c_(ox))是二级反应,速率常数(K_2)为4.1±0.1 * 10〜5 M〜(-1)s〜(-1)(pH = 6.3和100 mM NaCl)。在这些条件下,分子间反应代表了限速步骤。最小估计值为33 s〜(-1 )可以确定分子内电子转移反应NiR血红素c_(red)→NiR血红素d_(lox)的一级速率常数(K_1)。在5.8至8.0的pH值下研究K_2值的pH依赖性当pH逐渐移向碱性值时,分子内电子转移反应的速率常数N iR血红素c_(red)→NiR血红素d_(lox)逐渐减小到限制速率的程度。在pH 8.0下,我们确定分子间步骤的K_2值为1.4±0.7 s〜(-1),对应的K_2值为2.2199L?1.1 * 10〜4 M〜(-1)s〜(-1)。讨论了这些结果的生理相关性,并特别强调了提出的“最终产物”形成机理。

著录项

相似文献

  • 外文文献
  • 中文文献
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