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The Multicenter Aerobic Iron Respiratory Chain of Acidithiobacillus ferrooxidans Functions as an Ensemble with a Single Macroscopic Rate Constant

机译:酸性氧化硫硫杆菌的多中心有氧铁呼吸链作为一个具有单个宏观速率常数的集合起作用

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摘要

Electron transfer reactions among three prominent colored proteins in intact cells of Acidithiobacillus ferrooxidans were monitored using an integrating cavity absorption meter that permitted the acquisition of accurate absorbance data in suspensions of cells that scattered light. The concentrations of proteins in the periplasmic space were estimated to be 350 and 25 mg/ml for rusticyanin and cytochrome c, respectively; cytochrome a was present as one molecule for every 91 nm2 in the cytoplasmic membrane. All three proteins were rapidly reduced to the same relative extent when suspensions of live bacteria were mixed with different concentrations of ferrous ions at pH 1.5. The subsequent molecular oxygen-dependent oxidation of the multicenter respiratory chain occurred with a single macroscopic rate constant, regardless of the proteins' in vitro redox potentials or their putative positions in the aerobic iron respiratory chain. The crowded electron transport proteins in the periplasm of the organism constituted an electron conductive medium where the network of protein interactions functioned in a concerted fashion as a single ensemble with a standard reduction potential of 650 mV. The appearance of product ferric ions was correlated with the reduction levels of the periplasmic electron transfer proteins; the limiting first-order catalytic rate constant for aerobic respiration on iron was 7,400 s−1. The ability to conduct direct spectrophotometric studies under noninvasive physiological conditions represents a new and powerful approach to examine the extent and rates of biological events in situ without disrupting the complexity of the live cellular environment.
机译:使用积分腔吸收计监测完整的酸性氧化硫硫杆菌属细胞中三种突出的有色蛋白质之间的电子转移反应,该散射计允许在散射光的细胞悬液中获得准确的吸光度数据。质体花青素和细胞色素c的周质空间蛋白质浓度估计分别为350和25 mg / ml;细胞色素a在细胞质膜中每91 nm 2 以一个分子的形式存在。当将活细菌的悬浮液与不同浓度的亚铁离子在pH 1.5下混合时,所有三种蛋白质均迅速还原至相同的相对程度。无论蛋白质的体外氧化还原电势或其在有氧铁呼吸链中的假定位置如何,多中心呼吸链随后的分子氧依赖性氧化作用都以单个宏观速率常数发生。生物体周质中拥挤的电子转运蛋白构成了一种电子传导介质,在该介质中,蛋白质相互作用的网络以协调的方式作为一个单一的集合体起作用,其标准还原电位为650 mV。产物铁离子的出现与周质电子转移蛋白的还原水平有关。铁上有氧呼吸的极限一阶催化速率常数为7,400 s -1 。在无创生理条件下进行直接分光光度研究的能力代表了一种新颖而强大的方法,可以在不破坏活细胞环境复杂性的情况下就地检查生物事件的程度和速率。

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