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Aggregation of Puroindoline in Phospholipid Monolayers Spread at the Air-Liquid Interface

机译:空气液界面上磷脂单分子膜中Puroindoline的聚集

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摘要

Puroindolines, cationic and cystine-rich low molecular weight lipid binding proteins from wheat seeds, display unique foaming properties and antimicrobial activity. To unravel the mechanism involved in these properties, the interaction of puroindoline-a (PIN-a) with dipalmitoylphosphatidylcholine (DPPC) and dipalmitoylphosphatidylglycerol (DPPG) monolayers was studied by coupling Langmuir-Blodgett and imaging techniques. Compression isotherms of PIN-a/phospholipid monolayers and adsorption of PIN-a to lipid monolayers showed that the protein interacted strongly with phospholipids, especially with the anionic DPPG. The electrostatic contribution led to the formation of a highly stable lipoprotein monolayer. Confocal laser scanning microscopy and atomic force microscopy showed that PIN-a was mainly inserted in the liquid-expanded phase of the DPPC, where it formed an aggregated protein network and induced the fusion of liquid-condensed domains. For DPPG, the protein partitioned in both the liquid-expanded and liquid-condensed phases, where it was aggregated. The extent of protein aggregation was related both to the physical state of phospholipids, i.e., condensed or expanded, and to the electrostatic interactions between lipids and PIN-a. Aggregation of PIN-a at air-liquid and lipid interfaces could account for the biological and technological properties of this wheat lipid binding protein.
机译:Puroindolines是来自小麦种子的阳离子和富含胱氨酸的低分子量脂质结合蛋白,具有独特的起泡性能和抗菌活性。为了揭示涉及这些性质的机理,通过结合Langmuir-Blodgett和成像技术研究了puroindoline-a(PIN-a)与二棕榈酰磷脂酰胆碱(DPPC)和二棕榈酰磷脂酰甘油(DPPG)单层的相互作用。 PIN-a /磷脂单层的压缩等温线和PIN-a对脂质单层的吸附表明,蛋白质与磷脂,特别是与阴离子DPPG强烈相互作用。静电作用导致形成高度稳定的脂蛋白单层。共聚焦激光扫描显微镜和原子力显微镜显示,PIN-a主要插入DPPC的液相膨胀相,形成了聚集的蛋白质网络,并诱导了液体稠密域的融合。对于DPPG,该蛋白质既在液相膨胀相又在液体冷凝相中分配,并在其中聚集。蛋白质聚集的程度既与磷脂的物理状态(即浓缩或扩展)有关,又与脂质与PIN-a之间的静电相互作用有关。 PIN-a在气液和脂质界面的聚集可能解释了这种小麦脂质结合蛋白的生物学和技术特性。

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