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Stability of Water-Soluble Chlorophyll Protein (WSCP) Depends on Phytyl Conformation

机译:水溶性叶绿素蛋白(WSCP)的稳定性取决于植物构象

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Water-soluble chlorophyll proteins (WSCP) from Brassicaceae form homotetrameric chlorophyll (Chl)–protein complexes binding one Chl per apoprotein and no carotenoids. Despite the lack of photoprotecting pigments, the complex-bound Chls displays a remarkable stability toward photodynamic damage. On the basis of a mutational study, we show that not only the presence of the phytyls is necessary for photoprotection in WSCPs, as we previously demonstrated, but also is their correct conformation and localization. The extreme heat stability of WSCP also depends on the presence of the phytyl chains, confirming their relevance for the unusual stability of WSCP.
机译:来自Brassicaceae的水溶性叶绿素蛋白(WSCP)形成同种聚明叶绿素(CHL) - 蛋白质复合物结合每种亚己素的一个CHL和没有类胡萝卜素。尽管缺乏光保护颜料,但复杂的CHLS显示出对光动力损伤的显着稳定性。在一个突变研究的基础上,我们认为不仅是WSCP中的光保护所必需的植物的存在,正如我们之前所示的那样,但也是它们正确的构象和本地化。 WSCP的极端热稳定性还取决于植物链的存在,确认它们对WSCP不寻常稳定性的相关性。

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