首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >The plant defensin NaD1 introduces membrane disorder through a specific interaction with the lipid, phosphatidylinositol 4,5 bisphosphate
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The plant defensin NaD1 introduces membrane disorder through a specific interaction with the lipid, phosphatidylinositol 4,5 bisphosphate

机译:植物防御素NaD1通过与脂质磷脂酰肌醇4,5双磷酸酯的特异性相互作用而引起膜紊乱

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Plant defensins interact with phospholipids in bilayers as part of their cytotoxic activity. Solanaceous class II defensins with the loop 5 sequence pattern "S-[KR]-[ILVQ]-[ILVQ]-[KR]-[KR]" interact with PI(4,5)P-2. Here, the prototypical defensin of this class, NaD1, is used to characterise the biophysical interactions between these defensins and phospholipid bilayers. Binding of NaD1 to bilayers containing PI(4,5)P-2 occurs rapidly and the interaction is very strong. Dual polarisation interferometry revealed that NaD1 does not dissociate from bilayers containing PI(4,5)P-2. Binding of NaD1 to bilayers with or without P1(4,5)P2 induced disorder in the bilayer. However, permeabilisation assays revealed that NaD1 only permeabilised liposomes with PI(4,5)P-2 in the bilayer, suggesting a role for this protein-lipid interaction in the plasma membrane permeabilising activity of this defensin. No defensins in the available databases have the PI(4,5)P-2 binding sequence outside the solanaceous class II defensins, leading to the hypothesis that PI(4,5)P-2 binding co-evolved with the C-terminal propeptide to protect the host cell against the effects of the tight binding of these defensins to their cognate lipid as they travel along the secretory pathway. This data has allowed us to develop a new model to explain how this class of defensins permeabilises plasma membranes to kill target cells. (C) 2016 Elsevier B.V. All rights reserved.
机译:植物防御素与双层中的磷脂相互作用是其细胞毒性活性的一部分。具有环5序列模式“ S- [KR]-[ILVQ]-[ILVQ]-[KR]-[KR]”的茄科II类防御素与PI(4,5)P-2相互作用。在这里,此类的原型防御素NaD1用于表征这些防御素与磷脂双层之间的生物物理相互作用。 NaD1与包含PI(4,5)P-2的双层的结合迅速发生,并且相互作用非常强。双极化干涉测量法显示NaD1不会从含有PI(4,5)P-2的双层中解离。 NaD1绑定到有或没有P1(4,5)P2的双层诱导双层中的疾病。但是,通透性测定显示,NaD1仅在双层中通透了具有PI(4,5)P-2的脂质体,提示此蛋白-脂质相互作用在该防御素的质膜通透性中起作用。现有数据库中没有防御素在茄科II类防御素之外具有PI(4,5)P-2结合序列,导致以下假设:PI(4,5)P-2结合与C末端前肽共同进化当这些防御素沿着分泌途径行进时,可以保护宿主细胞免受这些防御素与其同源脂质的紧密结合的影响。该数据使我们能够开发新模型来解释这类防御素如何渗透质膜以杀死靶细胞。 (C)2016 Elsevier B.V.保留所有权利。

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