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Nanodomain Clustering of the Plant Protein Remorin by Solid-State NMR

机译:固态NMR解析植物蛋白Remorin的纳米域簇。

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Nanodomains are dynamic membrane subcompartments, enriched in specific lipid and protein components that act as functional platforms to manage an abundance of cellular processes. The remorin protein of plants is a well-established nanodomain marker and widely serves as a paradigm to study nanodomain clustering. Located at the inner leaflet of the plasma membrane, remorins perform essential functions during signalling. Using deuterium and phosphorus solid-state NMR, we inquire on the molecular determinants of the lipid-protein and protein-protein interactions driving nanodomain clustering. By monitoring thermotropism properties, lipid acyl chain order and membrane thickness, we report the effects of phosphoinositides and sterols on the interaction of various remorin peptides and protein constructs with the membrane. We probed several critical residues involved in this interaction and the involvement of the coiled-coil homo-oligomerisation domain into the formation of remorin nanodomains. We trace the essential role of the pH in nanodomain clustering based on anionic lipids such as phosphoinositides. Our results reveal a complex interplay between specific remorin residues and domains, the environmental pH and their resulting effects on the lipid dynamics for phosphoinositide-enriched membranes.
机译:纳米域是动态的膜子区室,富含特定的脂质和蛋白质成分,这些脂质和蛋白质成分充当管理大量细胞过程的功能平台。植物的remorin蛋白是一个公认的纳米域标记,广泛用作研究纳米域聚类的范例。 remorins位于质膜的内部小叶,在信号传导过程中起着重要的作用。使用氘和磷固态NMR,我们研究了驱动纳米域聚类的脂质-蛋白质和蛋白质-蛋白质相互作用的分子决定因素。通过监测嗜热性,脂质酰基链的顺序和膜的厚度,我们报道了磷酸肌醇和固醇对各种remorin肽和蛋白质构建体与膜相互作用的影响。我们探究了几个关键残基参与这种相互作用,以及卷曲螺旋均聚域参与了remorin纳米域的形成。我们追踪了基于阴离子脂质(如磷酸肌醇)的纳米域簇中pH的基本作用。我们的结果揭示了特定的remorin残基和域,环境pH值及其对富含磷酸肌醇的膜的脂质动力学的影响之间的复杂相互作用。

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