首页> 美国卫生研究院文献>Elsevier Sponsored Documents >Visualizing changes in electron distribution in coupled chains of cytochrome bc1 by modifying barrier for electron transfer between the FeS cluster and heme c1
【2h】

Visualizing changes in electron distribution in coupled chains of cytochrome bc1 by modifying barrier for electron transfer between the FeS cluster and heme c1

机译:通过修改FeS簇和血红素c1之间电子转移的势垒来可视化细胞色素bc1偶联链中电子分布的变化

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

Cytochrome c1 of Rhodobacter (Rba.) species provides a series of mutants which change barriers for electron transfer through the cofactor chains of cytochrome bc1 by modifying heme c1 redox midpoint potential. Analysis of post-flash electron distribution in such systems can provide useful information about the contribution of individual reactions to the overall electron flow. In Rba. capsulatus, the non-functional low-potential forms of cytochrome c1 which are devoid of the disulfide bond naturally present in this protein revert spontaneously by introducing a second-site suppression (mutation A181T) that brings the potential of heme c1 back to the functionally high levels, yet maintains it some 100 mV lower from the native value. Here we report that the disulfide and the mutation A181T can coexist in one protein but the mutation exerts a dominant effect on the redox properties of heme c1 and the potential remains at the same lower value as in the disulfide-free form. This establishes effective means to modify a barrier for electron transfer between the FeS cluster and heme c1 without breaking disulfide. A comparison of the flash-induced electron transfers in native and mutated cytochrome bc1 revealed significant differences in the post-flash equilibrium distribution of electrons only when the connection of the chains with the quinone pool was interrupted at the level of either of the catalytic sites by the use of specific inhibitors, antimycin or myxothiazol. In the non-inhibited system no such differences were observed. We explain the results using a kinetic model in which a shift in the equilibrium of one reaction influences the equilibrium of all remaining reactions in the cofactor chains. It follows a rather simple description in which the direction of electron flow through the coupled chains of cytochrome bc1 exclusively depends on the rates of all reversible partial reactions, including the Q/QH2 exchange rate to/from the catalytic sites.
机译:红细菌(Rba。)物种的细胞色素c1提供了一系列突变体,这些突变体通过修饰血红素c1氧化还原中点电势来改变电子通过细胞色素bc1辅因子链转移的障碍。分析此类系统中的闪蒸后电子分布可以提供有关单个反应对整个电子流的贡献的有用信息。在Rba。荚膜中,无功能的低电位形式的细胞色素c1缺乏天然存在于该蛋白质中的二硫键,通过引入第二位抑制(突变A181T),其自动恢复,从而使血红素c1的电位恢复到功能上较高的水平电平,但仍使其比原始值低100 mV。在这里,我们报道二硫键和突变A181T可以共存于一种蛋白质中,但该突变对血红素c1的氧化还原特性起着主要作用,其电势仍保持与无二硫键形式相同的较低值。这建立了有效的手段,可以在不破坏二硫化物的情况下,改变FeS团簇和血红素c1之间电子转移的势垒。比较在天然和突变的细胞色素bc1中由闪光引起的电子转移,仅当链与醌库的连接在两个催化位点的水平被中断时,电子的闪光后平衡分布才存在显着差异。使用特定的抑制剂,抗霉素或甲噻唑。在非抑制系统中,没有观察到这种差异。我们使用动力学模型解释了结果,其中一个反应平衡的变化会影响辅因子链中所有剩余反应的平衡。遵循一个相当简单的描述,其中电子流过细胞色素bc1偶联链的方向完全取决于所有可逆部分反应的速率,包括去往/来自催化位点的Q / QH2交换速率。

著录项

相似文献

  • 外文文献
  • 专利
代理获取

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