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首页> 外文期刊>Journal of molecular modeling >Three-dimensional model of zeaxanthin binding PsbS protein associated with nonphotochemical quenching of excess quanta of light energy absorbed by the photosynthetic apparatus
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Three-dimensional model of zeaxanthin binding PsbS protein associated with nonphotochemical quenching of excess quanta of light energy absorbed by the photosynthetic apparatus

机译:玉米黄质结合PsbS蛋白的三维模型与光合作用装置吸收的过量光能的非光化学猝灭相关

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摘要

A three-dimensional model of the PsbS protein was built with the help of homology-modeling methods. This protein is also known as CP22 and is associated with the protection of photosystem II of thylakoid from excess quanta of light energy absorbed by the photosynthetic apparatus. PsbS is reported to bind two molecules of zeaxanthin at low pH (< 5.0) and is believed to be essential for rapid nonphotochemical quenching (qE) of chlorophyll a fluorescence in photosystem II. An attempt was made to explain the pH modulation of the conformation of protein through salt-bridges Glu(-)(122)-Lys(+)(113) and Glu(-)(226)-Lys(+)(217). Binding of two molecules of zeaxanthin in the three-dimensional model of PsbS is postulated. The molecular mechanism of photoprotection by PsbS is explained through the model.
机译:借助于同源建模方法,建立了PsbS蛋白的三维模型。该蛋白质也称为CP22,与类囊体的光系统II免受光合作用设备吸收的过量光能的影响有关。据报道,PsbS在低pH(<5.0)时会结合两个玉米黄质分子,被认为对于光系统II中叶绿素a荧光的快速非光化学猝灭(qE)是必不可少的。试图解释通过盐桥Glu(-)(122)-Lys(+)(113)和Glu(-)(226)-Lys(+)(217)对蛋白质构象的pH调节。假定玉米黄质的两个分子在PsbS三维模型中的结合。通过该模型解释了PsbS光保护的分子机理。

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