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首页> 外文期刊>Acta Biochimica Polonica >Violaxanthin and diadinoxanthin de-epoxidation in various model lipid systems
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Violaxanthin and diadinoxanthin de-epoxidation in various model lipid systems

机译:各种模型脂质系统中的紫黄质和二恶黄质脱环氧化

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摘要

The xanthophyll cycle is an important photoprotective process functioning in plants. One of its forms, the violaxanthin (Vx) cycle, involves interconversion between: Vx, antheraxanthin (Ax) and zeaxanthin (Zx). Another kind of the xanthophyll cycle is the diadinoxanthin (Ddx) cycle in which interconversion between Ddx and diatoxanthin (Dtx) occurs. In this study an information on molecular mechanism and regulation of these two types of the xanthophyll cycle is presented. The influence of lipids on the de-epoxidation of the xanthophyll cycle pigments was investigated, with special focus put on the significance of physical properties of the aggregates formed by inverted lipid micelles, which are necessary for activity of the xanthophyll cycle enzymes. In particular, thickness of the hydrophobic fraction of the aggregates, size of the inverted micelles, suggested by mathematical description of the structures and solubility of Vx and Ddx in various kind of lipids were studied. Obtained results show that the rate of de-epoxidation is strongly dependent on the physicochemical properties of the lipids used. The key role for enzyme activation play non-bilayer lipids and the parameters of inverted micelles such as thickness, fluidity of hydrophobic core and their diameter. The presented results show that MGDG and other non-lamellar lipids like different forms of phosphatidylethanolamine are necessary for the Vx and Ddx de-epoxidation because they provide the threedimensional structures, which are needed for the binding of de-epoxidases and for the accessibility of Vx and Ddx to these enzymes.
机译:叶黄素循环是植物中重要的光保护过程。它的一种形式是紫黄质(Vx)循环,涉及Vx,花药黄素(Ax)和玉米黄质(Zx)之间的相互转换。叶黄素循环的另一种类型是二恶英黄嘌呤(Ddx)循环,其中Ddx和重黄嘌呤(Dtx)之间发生相互转换。在这项研究中,介绍了有关这两种叶黄素循环类型的分子机理和调控的信息。研究了脂质对叶黄素循环色素脱环氧化的影响,特别关注了由倒置脂质胶束形成的聚集体的物理性质的重要性,这对于叶黄素循环酶的活性是必需的。特别地,研究了通过数学描述Vx和Ddx在各种脂质中的结构和溶解度提出的聚集体疏水部分的厚度,反胶束的大小。所得结果表明,脱环氧化的速率强烈取决于所用脂质的物理化学性质。酶激活的关键作用是发挥非双层脂质和反胶束的参数,例如厚度,疏水核的流动性及其直径。呈现的结果表明,MGDG和其他非片状脂质(如不同形式的磷脂酰乙醇胺)对于Vx和Ddx脱环氧化是必需的,因为它们提供了三维结构,这是脱环酶结合和Vx可及性所必需的和Ddx这些酶。

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