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Comparison of lipid-dependent bilayer insertion of pHLIP and its P20G variant

机译:pHLIP及其P20G变体的脂质依赖性双层插入的比较

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摘要

The ability of the pH-Low Insertion Peptide (pHLIP) to insert into lipid membranes in a transbilayer conformation makes it an important tool for targeting acidic diseased tissues. pHLIP can also serve as a model template for thermodynamic studies of membrane insertion. We use intrinsic fluorescence and circular dichroism spectroscopy to examine the effect of replacing pHLIP’s central proline on the pH-triggered lipid-dependent conformational switching of the peptide. We find that the P20G variant (pHLIP-P20G) has a higher helical propensity than the native pHLIP (pHLIP-WT), in both water:organic solvent mixtures and in the presence of lipid bilayers. Spectral shifts of tryptophan fluorescence reveal that with both pHLIP-WT and pHLIP-P20G, the deeply penetrating interfacial form (traditionally called State II) is populated only in pure phosphocholine bilayers. The presence of either anionic lipids or phosphatidylethanolamine leads to a much shallower penetration of the peptide (referred to here as State IIS, for “shallow”). This novel state can be differentiated from soluble state by a reduction in accessibility of tryptophans to acrylamide and by FRET to vesicles doped with Dansyl-PE, but not by a spectral shift in fluorescence emission. FRET experiments indicate free energies for interfacial partitioning range from 6.2 to 6.8 kcal/mol and are marginally more favorable for pHLIP-P20G. The effective pKa for the insertion of both peptides depends on the lipid composition, but is always higher for pHLIP-P20G than for pHLIP-WT by approximately one pH unit, which corresponds to a difference of 1.3 kcal/mol in free energy of protonation favoring insertion of pHLIP-P20G.
机译:低pH值插入肽(pHLIP)可以跨双层构象插入脂质膜的能力使其成为靶向酸性病变组织的重要工具。 pHLIP还可以用作膜插入热力学研究的模型模板。我们使用内在荧光和圆二色光谱技术来研究替换pHLIP的中央脯氨酸对pH触发的肽依赖性脂质依赖性构象转换的影响。我们发现P20G变体(pHLIP-P20G)在水:有机溶剂混合物中以及在存在脂质双层的情况下均比天然pHLIP(pHLIP-WT)具有更高的螺旋倾向。色氨酸荧光的光谱位移表明,对于pHLIP-WT和pHLIP-P20G而言,仅在纯磷胆碱双层中填充深度穿透的界面形式(传统上称为状态II)。阴离子脂质或磷脂酰乙醇胺的存在会导致肽的渗透深度要浅得多(此处称为“ II”状态,简称“浅”)。可以通过降低色氨酸对丙烯酰胺的可及性和通过FRET掺杂Dansyl-PE的囊泡来区分这种新的状态与可溶状态,但不能通过荧光发射的光谱偏移来区分。 FRET实验表明,界面分配的自由能范围为6.2至6.8 kcal / mol,对pHLIP-P20G稍有优势。插入两种肽的有效pKa取决于脂质组成,但对于pHLIP-P20G,始终比对pHLIP-WT高大约一个pH单位,这对应于质子化自由能的差异为1.3 kcal / mol插入pHLIP-P20G。

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