【2h】

Optimal fold symmetry of LH2 rings on a photosynthetic membrane

机译:LH2环在光合膜上的最佳折叠对称性

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摘要

An intriguing observation of photosynthetic light-harvesting systems is the N-fold symmetry of light-harvesting complex 2 (LH2) of purple bacteria. We calculate the optimal rotational configuration of N-fold rings on a hexagonal lattice and establish two related mechanisms for the promotion of maximum excitation energy transfer (EET). (i) For certain fold numbers, there exist optimal basis cells with rotational symmetry, extendable to the entire lattice for the global optimization of the EET network. (ii) The type of basis cell can reduce or remove the frustration of EET rates across the photosynthetic network. We find that the existence of a basis cell and its type are directly related to the number of matching points S between the fold symmetry and the hexagonal lattice. The two complementary mechanisms provide selection criteria for the fold number and identify groups of consecutive numbers. Remarkably, one such group consists of the naturally occurring 8-, 9-, and 10-fold rings. By considering the inter-ring distance and EET rate, we demonstrate that this group can achieve minimal rotational sensitivity in addition to an optimal packing density, achieving robust and efficient EET. This corroborates our findings i and ii and, through their direct relation to S, suggests the design principle of matching the internal symmetry with the lattice order.
机译:光合作用的光收集系统的一个有趣的观察结果是紫色细菌的光收集复合物2(LH2)的N折对称性。我们计算六角形晶格上N形折叠环的最佳旋转构型,并建立两个相关的机制来促进最大激发能传递(EET)。 (i)对于某些折叠数,存在具有旋转对称性的最佳基本单元,可扩展到整个晶格以进行EET网络的全局优化。 (ii)碱性电池的类型可以减少或消除整个光合作用网络中EET速率的不足。我们发现基本单元的存在及其类型与折叠对称性和六边形格子之间的匹配点S的数量直接相关。这两个互补的机制提供了折数的选择标准,并标识了连续数的组。明显地,这样的一组由天然存在的8、9和10倍环组成。通过考虑环之间的距离和EET率,我们证明了该组除最佳包装密度外,还可以实现最小的旋转灵敏度,从而实现了稳固而高效的EET。这证实了我们的发现i和ii,并通过它们与S的直接关系,提出了使内部对称性与晶格顺序匹配的设计原理。

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