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Tuning Curvature and Stability of Monoolein Bilayers by Designer Lipid-Like Peptide Surfactants

机译:通过设计师类脂肽表面活性剂调节单油精双层的曲率和稳定性

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摘要

This study reports the effect of loading four different charged designer lipid-like short anionic and cationic peptide surfactants on the fully hydrated monoolein (MO)-based Pn3m phase (Q224). The studied peptide surfactants comprise seven amino acid residues, namely A6D, DA6, A6K, and KA6. D (aspartic acid) bears two negative charges, K (lysine) bears one positive charge, and A (alanine) constitutes the hydrophobic tail. To elucidate the impact of these peptide surfactants, the ternary MO/peptide/water system has been investigated using small-angle X-ray scattering (SAXS), within a certain range of peptide concentrations (R≤0.2) and temperatures (25 to 70°C). We demonstrate that the bilayer curvature and the stability are modulated by: i) the peptide/lipid molar ratio, ii) the peptide molecular structure (the degree of hydrophobicity, the type of the hydrophilic amino acid, and the headgroup location), and iii) the temperature. The anionic peptide surfactants, A6D and DA6, exhibit the strongest surface activity. At low peptide concentrations (R = 0.01), the Pn3m structure is still preserved, but its lattice increases due to the strong electrostatic repulsion between the negatively charged peptide molecules, which are incorporated into the interface. This means that the anionic peptides have the effect of enlarging the water channels and thus they serve to enhance the accommodation of positively charged water-soluble active molecules in the Pn3m phase. At higher peptide concentration (R = 0.10), the lipid bilayers are destabilized and the structural transition from the Pn3m to the inverted hexagonal phase (H2) is induced. For the cationic peptides, our study illustrates how even minor modifications, such as changing the location of the headgroup (A6K vs. KA6), affects significantly the peptide's effectiveness. Only KA6 displays a propensity to promote the formation of H2, which suggests that KA6 molecules have a higher degree of incorporation in the interface than those of A6K.
机译:这项研究报告了在完全水合的基于单油精(MO)的Pn3m相(Q 224 )上加载四种不同的带电设计剂脂质样短阴离子和阳离子肽表面活性剂的效果。研究的肽表面活性剂包含七个氨基酸残基,即A6D,DA6,A6K和KA6。 D(天冬氨酸)带有两个负电荷,K(赖氨酸)带有一个正电荷,A(丙氨酸)构成疏水尾。为了阐明这些肽表面活性剂的影响,已在一定的肽浓度(R≤0.2)和温度(25至70)的一定范围内,使用小角X射线散射(SAXS)研究了三元MO /肽/水系统°C)。我们证明双层曲率和稳定性受以下因素调节:i)肽/脂质摩尔比,ii)肽分子结构(疏水度,亲水性氨基酸的类型和头基位置),以及iii ) 温度。阴离子肽表面活性剂A6D和DA6具有最强的表面活性。在低肽浓度下(R = 0.01),Pn3m结构仍然保留,但由于结合在界面上的带负电荷的肽分子之间的强静电排斥作用,其晶格增加。这意味着阴离子肽具有扩大水通道的作用,因此它们可用于增强带正电荷的水溶性活性分子在Pn3m相中的容纳。在较高的肽浓度下(R 1 = 0.10),脂质双层不稳定并且诱导了从Pn 3m到倒六角相(H 2)的结构转变。对于阳离子肽,我们的研究表明,即使是较小的修饰,例如改变头基的位置(A6K与KA6),也会如何显着影响肽的有效性。只有KA6表现出促进H2形成的倾向,这表明KA6分子在界面上的掺入程度高于A6K。

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