Kusnetzow A, Singh D L, Martin C H, Barani I J, Birge R R
Department of Chemistry and W. M. Keck Center for Molecular Electronics, Syracuse University, Syracuse, New York 13244, USA.
Biophys J. 1999 May;76(5):2370-89. doi: 10.1016/S0006-3495(99)77394-7.
The nature of the chromophore binding site of light-adapted bacteriorhodopsin is analyzed by using modified neglect of differential overlap with partial single and double configuration interaction (MNDO-PSDCI) molecular orbital theory to interpret previously reported linear and nonlinear optical spectroscopic measurements. We conclude that in the absence of divalent metal cations in close interaction with Asp85 and Asp212, a positively charged amino acid must be present in the same vicinity. We find that models in which Arg82 is pointed upward into the chromophore binding site and directly stabilizes Asp85 and Asp212 are successful in rationalizing the observed one-photon and two-photon properties. We conclude further that a water molecule is strongly hydrogen bonded to the chromophore imine proton. The chromophore "1Bu*+" and "1Ag*-" states, despite extensive mixing, exhibit significantly different configurational character. The lowest-lying "1Bu*+" state is dominated by single excitations, whereas the second-excited "1Ag*-" state is dominated by double excitations. We can rule out the possibility of a negatively charged binding site, because such a site would produce a lowest-lying "1Ag*-" state, which is contrary to experimental observation. The possibility that Arg82 migrates toward the extracellular surface during the photocycle is examined.
利用改进的忽略微分重叠与部分单双组态相互作用(MNDO-PSDCI)分子轨道理论分析光适应细菌视紫红质发色团结合位点的性质,以解释先前报道的线性和非线性光学光谱测量结果。我们得出结论,在没有与Asp85和Asp212紧密相互作用的二价金属阳离子的情况下,同一附近区域必须存在带正电荷的氨基酸。我们发现,在将Arg82向上指向发色团结合位点并直接稳定Asp85和Asp212的模型中,成功地解释了观察到的单光子和双光子性质。我们进一步得出结论,一个水分子与发色团亚胺质子形成强氢键。发色团的“1Bu*+”和“1Ag*-”态,尽管有广泛的混合,但表现出明显不同的构型特征。能量最低的“1Bu*+”态以单重激发为主,而第二激发的“1Ag*-”态以双重激发为主。我们可以排除带负电荷结合位点的可能性,因为这样的位点会产生能量最低的“1Ag*-”态,这与实验观察结果相反。研究了Arg82在光循环过程中向细胞外表面迁移的可能性。