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Polarizability tensor theory based upon a Bayley-Nielsen-Schellman-type model Hamiltonian: Circular dichroism calculations of polypeptides

机译:基于Bayley-Nielsen-Schellman型模型哈密顿量的极化率张量理论:多肽的圆二色性计算

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摘要

In our previous article based upon the usual Fano-DeVoe model Hamiltonian, the partial polymer polarizability tensor equation for describing visible and ultraviolet (VIS/UV) absorption and circular dichroism (CD) spectra was represented in terms of transition moments and a partial polymer Green's function matrix equation, which is constructed from partial monomer Green's matrix elements and inter(sub)molecular interaction energies. Here, on the basis of the extended Fano-DeVoe model Hamiltonian similar to the Bayley-Nielsen-Schellman secular Hamiltonian matrix, we represent a partial polymer polarizability tensor matrix equation in terms of transition moments and a partial polymer Green's function matrix equation, which is constructed from partial monomer Green's matrix elements, inter(sub)molecular interaction energies, and inter(sub)molecular electrostatic interaction energies. The last ones are newly taken into account. Computing the amide monomer spectroscopic parameters by the CNDO/S method and substituting them into the polymer polarizability tensor matrix equation derived, we have successfully carried out the CD band shape calculations on polypeptides having #alpha#-helix and #beta#-sheet structures and on a tripeptide, N-acetyl-Pro-Gly-Leu-OH having a type II #beta#-turn conformation.
机译:在我们以前的基于常规Fano-DeVoe模型哈密顿量的文章中,用于描述可见和紫外(VIS / UV)吸收和圆二色性(CD)光谱的部分聚合物极化率张量方程用跃迁矩表示,部分聚合物的格林氏谱表示。函数矩阵方程,由部分单体格林矩阵元素和分子间(子)相互作用能构成。在此,基于类似于Bayley-Nielsen-Schellman世俗哈密顿矩阵的扩展Fano-DeVoe哈密顿模型,我们用跃迁矩表示了部分聚合物极化率张量矩阵方程,并表示了部分聚合物Green函数矩阵方程。由部分单体Green的矩阵元素,分子间(子)相互作用能和分子间(子)静电相互作用能构成。最后一个是新考虑的。通过CNDO / S方法计算酰胺单体的光谱参数,并将其代入导出的聚合物极化率张量矩阵方程,我们已经成功地对具有#alpha#-螺旋和#beta#-sheet结构的多肽进行了CD带形状计算在具有II型#β#-转构型的三肽N-乙酰基-Pro-Gly-Leu-OH上。

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