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首页> 外文期刊>Angewandte Chemie >Fine Tuning of Chlorophyll Spectra by Protein-Induced Ring Deformation
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Fine Tuning of Chlorophyll Spectra by Protein-Induced Ring Deformation

机译:通过蛋白质诱导的环变形对叶绿素光谱进行微调

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摘要

The ability to tune the light-absorption properties of chlorophylls by their protein environment is the key to the robustness and high efficiency of photosynthetic light-harvesting proteins. Unfortunately, the intricacy of the natural complexes makes it very difficult to identify and isolate specific protein-pigment interactions that underlie the spectral-tuning mechanisms. Herein we identify and demonstrate the tuning mechanism of chlorophyll spectra in type II water-soluble chlorophyll binding proteins from Brassicaceae (WSCPs). By comparing the molecular structures of two natural WSCPs we correlate a shift in the chlorophyll red absorption band with deformation of its tetrapyrrole macrocycle that is induced by changing the position of a nearby tryptophan residue. We show by a set of reciprocal point mutations that this change accounts for up to 2/3 of the observed spectral shift between the two natural variants.
机译:通过其蛋白环境调节叶绿素的光吸收特性的能力是光合作用光捕获蛋白的坚固性和高效性的关键。不幸的是,天然复合物的复杂性使得很难识别和分离作为光谱调节机制基础的特定蛋白质-色素相互作用。在本文中,我们确定并证明了来自十字花科的II型水溶性叶绿素结合蛋白中叶绿素光谱的调谐机制。通过比较两个天然WSCP的分子结构,我们将叶绿素红吸收带的移动与其四吡咯大环的变形相关联,该变形是通过改变附近色氨酸残基的位置引起的。我们通过一组相互的点突变表明,这种变化占两个自然变异之间观察到的光谱偏移的多达2/3。

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