Chen Xiaohua, Zhang Liang, Wang Zhiping, Li Jilai, Wang Wen, Bu Yuxiang
The Center for Modeling and Simulation Chemistry, Institute of Theoretical Chemistry, Shandong University, Jinan 250100, People's Republic of China.
J Phys Chem B. 2008 Nov 13;112(45):14302-11. doi: 10.1021/jp805910x. Epub 2008 Oct 16.
Our calculations found that the O thereforeO three-electron (3e) bonds (2.16 approximately 2.27 A) can be formed not only between two neighboring peptide units in a main chain but also between two adjacent peptide units in two different main chains in proteins. This finding may address electron hole migration from one peptide unit to the next in proteins. Evidently, stability of the O thereforeO 3e bonded species is strongly dependent on the component of the oligopeptides and is reduced owing to the steric hindrance of the side chains when the big chains present in oligopeptides. Besides, formation of the O thereforeO 3e bonds competes with the formation of the other forms of three-electron bonds depending on the component of the polypeptides. Formation of the O thereforeS 3e bond is thermodynamically more favorable than that of the O thereforeO 3e bond for the oligopeptides containing sulfur atom in their side chains. Similarly, formation of the O thereforepi 3e bond between aromatic ring of the side chain and the neighboring peptide unit is more stable than that of the O thereforeO 3e bond when the aromatic amino acids present in the oligopeptides. We infer that a series of three-electron bonds may be formed during the electron hole migration along the peptide backbone in proteins and assist electron hole transport as relay stations, supporting the peptide chain as a conduction wire. The ab initio molecular dynamics simulations of the polypeptides also support this conclusion.
我们的计算发现,因此,O的三电子(3e)键(约2.16至2.27埃)不仅可以在主链中两个相邻的肽单元之间形成,而且在蛋白质中两条不同主链的两个相邻肽单元之间也可以形成。这一发现可能解释了蛋白质中电子空穴从一个肽单元迁移到下一个肽单元的现象。显然,因此,O的3e键合物种的稳定性强烈依赖于寡肽的组成部分,并且当寡肽中存在大侧链时,由于侧链的空间位阻,其稳定性会降低。此外,因此,O的3e键的形成与其他形式的三电子键的形成相互竞争,这取决于多肽的组成部分。对于侧链中含有硫原子的寡肽,因此,O与S的3e键的形成在热力学上比因此,O的3e键更有利。同样,当寡肽中存在芳香族氨基酸时,侧链的芳香环与相邻肽单元之间形成的因此,O与π的3e键比因此,O的3e键更稳定。我们推断,在蛋白质中电子空穴沿着肽主链迁移的过程中,可能会形成一系列三电子键,并作为中继站协助电子空穴传输,将肽链作为导线来支持。多肽的从头算分子动力学模拟也支持这一结论。