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首页> 外文期刊>Biochemistry >Effect of Variations in the Structure of a Polyleucine-Based alpha-Helical Transmembrane Peptide on Its Interaction with Phosphatidylglycerol Bilayers.
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Effect of Variations in the Structure of a Polyleucine-Based alpha-Helical Transmembrane Peptide on Its Interaction with Phosphatidylglycerol Bilayers.

机译:基于聚亮氨酸的α-螺旋跨膜肽结构变化对其与磷脂酰甘油双层相互作用的影响。

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High-sensitivity differential scanning calorimetry and Fourier transform infrared spectroscopy were used to study the interaction of a cationic alpha-helical transmembrane peptide, acetyl-Lys(2)-Leu(24)-Lys(2)-amide (L(24)), and members of the homologous series of anionic n-saturated diacyl phosphatidylglycerols (PGs). Analogues of L(24), in which the lysine residues were replaced by 2,3-diaminopropionic acid (L(24)DAP), or in which a leucine residue at each end of the polyleucine sequence was replaced by a tryptophan (WL(22)W), were also studied to investigate the roles of lysine side-chain snorkeling and aromatic side-chain interactions with the interfacial region of phospholipid bilayers. The gel/liquid-crystalline phase transition temperature of the host PG bilayers is altered by these peptides in a hydrophobic mismatch-dependent manner, as previously found with zwitterionic phosphatidylcholine (PC) bilayers. However, all three peptides reduce the phase transition temperature and enthalpy to a greater extent in anionic PG bilayers than in zwitterionic PC bilayers, with WL(22)W having the largest effect. All three peptides form very stable alpha-helices in PG bilayers, but small conformational changes are induced in response to a mismatch between peptide hydrophobic length and gel-state lipid bilayer hydrophobic thickness. Moreover, electrostatic and hydrogen-bonding interactions occur between the terminal lysine residues of L(24) and L(24)DAP and the polar headgroups of PG bilayers. However, such interactions were not observed in PG/WL(22)W bilayers, suggesting that the cation-pi interactions between the tryptophan and lysine residues predominate. These results indicate that the lipid-peptide interactions are affected not only by the hydrophobic mismatch between these peptides and the host lipid bilayer, but also by the tryptophan-modulated electrostatic and hydrogen-bonding interactions between the positively charged lysine residues at the termini of these peptides and the negatively charged polarheadgroups of the PG bilayers.
机译:高灵敏度差示扫描量热法和傅里叶变换红外光谱用于研究阳离子α-螺旋跨膜肽,乙酰基-Lys(2)-Leu(24)-Lys(2)-酰胺(L(24))的相互作用,以及同系阴离子n-饱和二酰基磷脂酰甘油(PGs)系列成员。 L(24)的类似物,其中赖氨酸残基被2,3-二氨基丙酸(L(24)DAP)取代,或多亮氨酸序列两端的亮氨酸残基被色氨酸(WL( 22)W),还研究了赖氨酸侧链浮潜和芳香族侧链与磷脂双层界面区域的相互作用。这些肽以疏水失配依赖性方式改变了宿主PG双层的凝胶/液晶相变温度,如先前在两性离子磷脂酰胆碱(PC)双层中发现的那样。但是,与两性离子PC双层相比,阴离子PG双层中所有这三种肽均能最大程度地降低相变温度和焓,其中WL(22)W的作用最大。所有这三种肽在PG双层中均形成非常稳定的α螺旋,但响应于肽疏水长度和凝胶态脂质双层疏水厚度之间的不匹配,诱导了小的构象变化。此外,L(24)和L(24)DAP的末端赖氨酸残基与PG双层的极性头基之间发生静电和氢键相互作用。但是,这种相互作用在PG / WL(22)W双层中未观察到,这表明色氨酸和赖氨酸残基之间的阳离子-π相互作用占主导。这些结果表明,脂质-肽相互作用不仅受到这些肽与宿主脂质双层之间的疏水性错配的影响,而且还受到这些末端处带正电荷的赖氨酸残基之间色氨酸调节的静电和氢键相互作用的影响。肽和PG双层的带负电荷的极性头基。

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