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Evidence for the Existence of One Antenna-Associated Lipid-Dissolved and Two Protein-Bound Pools of Diadinoxanthin Cycle Pigments in Diatoms

机译:硅藻中二恶英黄素循环色素存在一个与天线相关脂溶性和两个蛋白结合池的证据

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摘要

We studied the localization of diadinoxanthin cycle pigments in the diatoms Cyclotella meneghiniana and Phaeodactylum tricornutum. Isolation of pigment protein complexes revealed that the majority of high-light-synthesized diadinoxanthin and diatoxanthin is associated with the fucoxanthin chlorophyll protein (FCP) complexes. The characterization of intact cells, thylakoid membranes, and pigment protein complexes by absorption and low-temperature fluorescence spectroscopy showed that the FCPs contain certain amounts of protein-bound diadinoxanthin cycle pigments, which are not significantly different in high-light and low-light cultures. The largest part of high-light-formed diadinoxanthin cycle pigments, however, is not bound to antenna apoproteins but located in a lipid shield around the FCPs, which is copurified with the complexes. This lipid shield is primarily composed of the thylakoid membrane lipid monogalactosyldiacylglycerol. We also show that the photosystem I (PSI) fraction contains a tightly connected FCP complex that is enriched in protein-bound diadinoxanthin cycle pigments. The peripheral FCP and the FCP associated with PSI are composed of different apoproteins. Tandem mass spectrometry analysis revealed that the peripheral FCP is composed mainly of the light-harvesting complex protein Lhcf and also significant amounts of Lhcr. The PSI fraction, on the other hand, shows an enrichment of Lhcr proteins, which are thus responsible for the diadinoxanthin cycle pigment binding. The existence of lipid-dissolved and protein-bound diadinoxanthin cycle pigments in the peripheral antenna and in PSI is discussed with respect to different specific functions of the xanthophylls.
机译:我们研究了硅藻黄体周期轮虫和粉角线虫中硅藻黄质循环色素的定位。色素蛋白复合物的分离显示,大多数高光合成的二恶黄质和重黄嘌呤与岩藻黄质叶绿素蛋白(FCP)复合物有关。通过吸收和低温荧光光谱对完整细胞,类囊体膜和色素蛋白复合物的表征表明,FCP含有一定数量的蛋白质结合的二恶黄质循环色素,在高光和低光培养物中差异不显着。然而,高光形成的二恶英黄素循环色素的最大部分不与触角载脂蛋白结合,而是位于FCP周围的脂质屏蔽层中,并与复合物一起纯化。该脂质屏蔽物主要由类囊体膜脂质单半乳糖基二酰基甘油构成。我们还显示,光系统I(PSI)组分包含紧密连接的FCP复合物,该复合物富含蛋白质结合的二恶英黄素循环色素。外周FCP和与PSI相关的FCP由不同的脱辅基蛋白组成。串联质谱分析显示,外周FCP主要由捕光复合蛋白Lhcf和大量Lhcr组成。另一方面,PSI馏分显示Lhcr蛋白富集,从而导致了二恶英黄素循环色素结合。关于叶黄素的不同特定功能,讨论了周围天线和PSI中脂溶性和蛋白结合的二恶黄质循环色素的存在。

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