首页> 外文期刊>Inorganica Chimica Acta >TUNNELING MATRIX ELEMENT IN RU-MODIFIED BLUE COPPER PROTEINS - PRUNING THE PROTEIN IN SEARCH OF ELECTRON TRANSFER PATHWAYS
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TUNNELING MATRIX ELEMENT IN RU-MODIFIED BLUE COPPER PROTEINS - PRUNING THE PROTEIN IN SEARCH OF ELECTRON TRANSFER PATHWAYS

机译:RU修饰的蓝铜蛋白质中的隧道基质元素-在电子传递途径的搜寻中修剪蛋白质。

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摘要

We investigate with semi-empirical extended Huckel theory calculations the tunneling matrix element for electron transfer in three ruthenium-modified blue copper azurin molecules from the bacterium Pseudomonas aeruginosa which have been recently synthesized and studied experimentally by Gray and co-workers. All of the atoms in the protein can be included in the calculations with the method of transition amplitudes that has been developed recently. Our particular focus here, however, is to develop procedures that create a truncated protein much smaller than the initial 2000 atom one, the aim being to retain only those amino acids that are important to the electron tunneling mechanism. Such a procedure, which we refer to as 'pruning', is useful, first because it reduces the size of the problem, perhaps allowing for more accurate techniques to be used on the truncated protein, and second because it allows for the identification of the regions in the protein in which the tunneling election is localized. The pruning procedures enable us to reduce the number of atoms required in an extended Huckel theory analysis of the tunneling mechanism by approximately a factor of 10 over that in the original protein. [References: 38]
机译:我们用半经验扩展的Huckel理论进行研究,计算出由铜绿假单胞菌(Pseudomonas aeruginosa)细菌组成的三个钌修饰的蓝铜天青蛋白分子中电子的隧穿基质元素,这些分子最近由Gray及其同事合成并进行了实验研究。蛋白质中的所有原子都可以用最近开发的跃迁幅度方法包括在计算中。但是,我们这里的重点是开发一种程序,以创建一种截短的蛋白质,该蛋白质要比最初的2000个原子小得多,目的是仅保留那些对电子隧穿机理重要的氨基酸。这种方法(我们称为“修剪”)很有用,首先是因为它减小了问题的大小,也许允许在截短的蛋白质上使用更准确的技术,其次是因为它可以鉴定出截短的蛋白质。隧道选择所在的蛋白质区域。修剪程序使我们能够将隧穿机理的扩展Huckel理论分析中所需的原子数比原始蛋白质减少约10倍。 [参考:38]

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