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首页> 外文期刊>Angewandte Chemie >Chlorophyll-Derived Yellow Phyllobilins of Higher Plants as Medium-Responsive Chiral Photoswitches
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Chlorophyll-Derived Yellow Phyllobilins of Higher Plants as Medium-Responsive Chiral Photoswitches

机译:叶绿素衍生的高级植物叶绿素作为中等响应性手性光开关

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摘要

The fall colors are signs of chlorophyll breakdown, the biological process in plants that generates phyllobilins. Most of the abundant natural phyllobilins are colorless, but yellow phyllobilins (phylloxanthobilins) also occur in fall leaves. As shown here, phylloxanthobilins are unique four-stage photoswitches. Which switching mode is turned on is controlled by the molecular environment. In polar media, phylloxanthobilins are monomeric and undergo photoreversible Z/Eisomerization, similar to that observed for bilirubin. Unlike bilirubin, however, the phylloxanthobilin Zisomers photodimerize in apolar solvents by regio- and stereospecific thermoreversible [2+2]cycloadditions from self-assembled hydrogen-bonded dimers. X-ray analysis revealed the first stereostructure of a phylloxanthobilin and its hydrogen-bonded self-templating architecture, helping to rationalize its exceptional photoswitch features. The chemical behavior of phylloxanthobilins will play a seminal role in identifying biological roles of phyllobilins.
机译:秋天的颜色是叶绿素分解的迹象,叶绿素是植物中产生叶绿素的生物过程。大多数丰富的天然叶胆素是无色的,但是黄色的叶胆素(叶黄素)也出现在秋天的叶子中。如此处所示,叶黄素是独特的四阶段光开关。哪个开关模式打开受分子环境控制。在极性介质中,叶黄素是单体的,并经历光可逆的Z /异构化,类似于对胆红素的观察。然而,与胆红素不同,叶黄素胆红素齐聚物在非极性溶剂中通过自组装的氢键合二聚体形成的区域和立体特异性热可逆性[2 + 2]环加成而光聚合。 X射线分析揭示了叶黄素的第一个立体结构及其氢键自模板结构,有助于合理化其出色的光电开关功能。叶黄素的化学行为将在鉴定叶黄素的生物学作用中发挥重要作用。

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