Choi Jun-Ho, Hahn Seungsoo, Cho Minhaeng
Department of Chemistry and Center for Multidimensional Spectroscopy, Korea University, Seoul 136-701, Korea.
Biopolymers. 2006 Dec 5;83(5):519-36. doi: 10.1002/bip.20583.
Using the constrained MD simulation method in combination with quantum chemistry calculation, Hessian matrix reconstruction, and fragmentation approximation methods, we established a computational scheme for numerical simulations of amide I IR absorption, vibrational circular dichroism (VCD), and 2D IR photon echo spectra of peptides in solution. Six different secondary structure peptides, i.e., alpha-helix, 3(10)-helix, pi-helix, antiparallel and parallel beta-sheets, and polyproline II (P(II)), are considered, and the vibrational characteristic features in their linear and nonlinear spectra in the amide I band region are discussed. Isotope-labeling effects on IR and VCD spectra are notable only for alpha- and pi-helical peptides due to the strong vibrational couplings between two nearest neighboring amide I local oscillators. The amplitudes of difference 2D IR spectra are shown to be strongly dependent on both the extent of mode delocalization and the relative orientation of local mode transition dipoles determined by secondary structure.
我们结合量子化学计算、海森矩阵重构和碎片近似方法,采用受限分子动力学模拟方法,建立了一种用于数值模拟溶液中肽的酰胺I红外吸收、振动圆二色性(VCD)和二维红外光子回波光谱的计算方案。考虑了六种不同二级结构的肽,即α-螺旋、3(10)-螺旋、π-螺旋、反平行和平行β-折叠以及多聚脯氨酸II(P(II)),并讨论了它们在酰胺I带区域的线性和非线性光谱中的振动特征。由于两个相邻酰胺I局部振子之间的强振动耦合,同位素标记对红外和VCD光谱的影响仅在α-螺旋和π-螺旋肽中显著。二维红外光谱差谱的振幅显示强烈依赖于模式离域程度和由二级结构决定的局部模式跃迁偶极子的相对取向。