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Chlorophyll Ring Deformation Modulates Qy Electronic Energy in Chlorophyll-Protein Complexes and Generates Spectral Forms

机译:叶绿素环变形调节叶绿素-蛋白质复合物中的Qy电子能并产生光谱形式

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摘要

The possibility that the chlorophyll (chl) ring distortions observed in the crystal structures of chl-protein complexes are involved in the transition energy modulation, giving rise to the spectral forms, is investigated. The out-of-plane chl-macrocycle distortions are described using an orthonormal set of deformations, defined by the displacements along the six lowest-frequency, out-of-plane normal coordinates. The total chl-ring deformation is the linear combination of these six deformations. The two higher occupied and the two lower unoccupied chl molecular orbitals, which define the Qy electronic transition, have the same symmetry as four of the six out-of-plane lowest frequency modes. We assume that a deformation along the normal-coordinate having the same symmetry as a given molecular orbital will perturb that orbital and modify its energy. The changes in the chl Qy transition energies are evaluated in the Peridinin-Chl-Protein complex and in light harvesting complex II (LHCII), using crystallographic data. The macrocycle deformations induce a distribution of the chl Qy electronic energy transitions which, for LHCII, is broader for chla than for chlb. This provides the physical mechanism to explain the long-held view that the chla spectral forms in LHCII are both more numerous and cover a wider energy range than those of chlb.
机译:研究了在chl-蛋白质复合物晶体结构中观察到的叶绿素(chl)环畸变参与跃迁能量调制,从而产生光谱形式的可能性。平面外chl-宏周期畸变是使用一组正交变形描述的,该变形由沿六个最低频率,平面外法线坐标的位移定义。总的chl环变形是这六个变形的线性组合。定义Qy电子跃迁的两个较高占据的空间和两个较低占据的chl分子轨道,与六个平面外最低频率模式中的四个具有相同的对称性。我们假设沿着与给定分子轨道相同的对称性的法线坐标变形将扰动该轨道并改变其能量。使用晶体学数据,评估了Peridinin-Chl-蛋白质复合物和光收集复合物II(LHCII)中的chl Qy跃迁能的变化。大环的变形引起了chl Qy电子能量跃迁的分布,对于LHCII,chla比chlb宽。这提供了解释长久以来的观点的物理机制,即LHCII中的chla光谱形式比chlb的数目更多,覆盖的能量范围更广。

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