Coherent singlet-triplet transitions at the initial step of tubulin assembly into microtubules

被引:0
|
作者
Tulub, AA [1 ]
机构
[1] St Petersburg State Univ, St Petersburg 199034, Russia
来源
BIOFIZIKA | 2005年 / 50卷 / 01期
关键词
tubulin; assembly; microtubules; ab initio molecular dynamics; B3LYP QM/MM density functional method; magnesium-guanosine triphosphate complex; biological water; triplet and singlet transitions; phase and spatial coherence;
D O I
暂无
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
Quantum chemistry calculations PFT-B3LYP QM/MM method, 6-31G** basis set, + ab initio molecular dynamics] were used to study the action of Mg2+ on tubulin properties. It was shown that the hydration of the guanosine triphosphate-tubulin forms a protein zone structure, which includes a electron-occupied zone and a conductivity zone. The binding of Mg2+ to guanosine triphosphate-tubulin results in the unpairing of electrons in the occupied zone (triplet state formation) followed by their transition to the conductivity zone in which the inversion of spin occurs (singlet state formation). The formation of triplet state is the initial step in the subsequent protein dynamics in the picosecond range of time. The dynamics shows up as a coherent oscillating transition of tubulin between the triplet and singlet states, which is evidence of a simultaneous adjustment between nuclear and electron configurations of the protein (ab initio molecular dynamics calculations). The barrier between the triplet and singlet states does not exceed 0.60 kcal.mol(-1). The barrier overcome is considered as electron tunneling through the Fermi surface, which separates the occupied and conductivity zones. Zone formation occurs in the presence of the shell of biological water surrounding the protein.
引用
收藏
页码:62 / 68
页数:7
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