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首页> 外文期刊>Protein Science: A Publication of the Protein Society >In silico model of an antenna of a phycobilisome and energy transfer rates determination by theoretical F?rster approach
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In silico model of an antenna of a phycobilisome and energy transfer rates determination by theoretical F?rster approach

机译:藻胆体天线的计算机模型和能量传递速率的理论Fster方法确定

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摘要

Energy transfer (ET) in phycobilisomes, a macrocomplex of phycobiliproteins and linker proteins, is a process that is difficult to understand completely. A model for a rod composed of two hexamers of Phycocyanin and two hexamers of Phycoerythrin was built using an in silico approach and the three-dimensional structures of both phycobiliproteins from Gracilaria chilensis. The model was characterized and showed 125 ? wide and 230 ? high, which agree with the dimensions of a piling of four hexamers as observed in the images of subcomplexes of phycobilisomes obtained by transmission electron microscopy. ET rates between every pair of chromophores in the model were calculated using the F?rster approach, and the fastest rates were selected to draw preferential ET pathways along the rod. Every path indicates that the ET is funneled toward the chromophores located at Cysteines 82 in Phycoerythrin and 84 in Phycocyanin. The chromophores that face the exterior of the rod are phycoerythrobilins, and they also show a preferential ET toward the chromophores located at the center of the rod. The values calculated, in general, agree with the experimental data reported previously, which validates the use of this experimental approach. Published by Wiley-Blackwell.
机译:藻胆体(藻胆蛋白和接头蛋白的大分子复合体)中的能量转移(ET)是一个很难完全理解的过程。使用计算机方法和来自智利江Gra的两种藻胆蛋白的三维结构,构建了由两个藻蓝蛋白六聚体和藻红蛋白两个六聚体组成的棒的模型。对模型进行了表征并显示125?宽230?高,这与通过透射电子显微镜获得的藻胆体亚复合物图像中观察到的四个六聚体的堆积尺寸一致。使用F?rster方法计算模型中每对生色团之间的ET速率,并选择最快的速率沿棒杆绘制优先ET途径。每条路径都表明ET朝着位于藻红蛋白的半胱氨酸82和藻蓝蛋白的84的生色团漏斗。面向棒外部的生色团是藻红蛋白,它们也对位于棒中心的生色团显示优先的ET。通常,计算得出的值与先前报告的实验数据相符,这验证了此实验方法的使用。由Wiley-Blackwell发布。

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