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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Delineation of the dynamic properties of individual lipid species in native and synthetic pulmonary surfactants
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Delineation of the dynamic properties of individual lipid species in native and synthetic pulmonary surfactants

机译:描绘天然和合成的肺表面活性剂中单个脂质种类的动态特性

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Pulmonary surfactant (PS) is characterized by a highly conserved lipid composition and the formation of unique multilamellar structures within the lung. An unusually high concentration of DPPC is a hallmark of PS and is critical to the formation of a high surface area, stable air/water interface; the unusual lipid polymorphisms observed in PS are dependent on surfactant proteins, particularly lung surfactant protein B (SP-B). The molecular mechanisms of lipid trafficking and assembly in PS remain largely uncharacterized. Using H-2 and P-31 NMR, we characterize the dynamics and polymorphisms of the major lipid species in native PS and synthetic lipid mixtures as a function of SP-B1-25 addition. Our findings point to increased dynamics and a departure from a lamellar behavior for DPPC on addition of the peptide, consistent with our observations of DPPC phase separation in native surfactant. The monounsaturated lipids POPC, POPG and POPE remain in a lamellar phase and are less affected than DPPC by surfactant peptide addition. Additionally, we demonstrate that the properties of a native PS can be successfully mimicked by using a fully synthetic lipid mixture allowing the efficient evaluation of peptidomimetics under development for PS replacement therapies via NMR spectroscopy. The specificity of the dynamic changes in DPPC relative to POPC suggests the importance of tuning partitioning properties in successful peptidomimetic design. This article is part of a Special Issue entitled: NMR Spectroscopy for Atomistic Views of Biomembranes and Cell Surfaces. Guest Editors: Lynette Cegelski and David P. Weliky. (C) 2014 Elsevier B.V. All rights reserved.
机译:肺表面活性剂(PS)的特征是高度保守的脂质成分以及在肺内形成独特的多层结构。 DPPC的异常高浓度是PS的标志,对形成高表面积,稳定的空气/水界面至关重要。 PS中观察到的异常脂质多态性取决于表面活性剂蛋白,尤其是肺表面活性剂蛋白B(SP-B)。 PS中脂质运输和组装的分子机制仍然未知。使用H-2和P-31 NMR,我们表征了天然PS和合成脂质混合物中主要脂质种类的动力学和多态性,其与SP-B1-25添加的关系。我们的发现表明,在添加肽后,DPPC的动力学增加,并且偏离了层状行为,这与我们在天然表面活性剂中DPPC相分离的观察结果一致。单不饱和脂质POPC,POPG和POPE保持层状相,并且受表面活性剂肽添加的影响小于DPPC。此外,我们证明了通过使用完全合成的脂质混合物可以成功地模仿天然PS的特性,从而可以通过NMR光谱法对正在开发的PS替代疗法的拟肽药物进行有效评估。 DPPC相对于POPC的动态变化的特异性表明,在成功的拟肽设计中调整分区特性非常重要。本文是《特刊》的一部分,该刊物的标题为:NMR光谱用于生物膜和细胞表面的原子观。客座编辑:Lynette Cegelski和David P. Weliky。 (C)2014 Elsevier B.V.保留所有权利。

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