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pH-Dependent Membrane Interactions of the Histidine-Rich Cell-Penetrating Peptide LAH4-L1

机译:组氨酸丰富的细胞穿透肽LAH4-L1的pH依赖性膜相互作用。

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摘要

The histidine-rich designer peptide LAH4-L1 exhibits antimicrobial and potent cell-penetrating activities for a wide variety of cargo including nucleic acids, polypeptides, adeno-associated viruses, and nanodots. The non-covalent complexes formed between the peptide and cargo enter the cell via an endosomal pathway where the pH changes from neutral to acidic. Here, we investigated the membrane interactions of the peptide with phospholipid bilayers and its membrane topology using static solid-state NMR spectroscopy. Oriented 15N solid-state NMR indicates that in membranes composed of 1-palmitoyl-2-oleoyl-sn-glycero-3-phosphocholine (POPC) and 1-palmitoyl-2-oleoyl-sn-glycero-3-phospho-L-serine (POPS) 3:1 mol/mole and at neutral pH, the peptide adopts transmembrane topologies. Furthermore, 31P and 2H solid-state NMR spectra show that liquid crystalline 1,2-dimyristoyl-sn-glycero-3-phosphocholine (DMPC) and POPC/POPS 3:1 liposomes retain a bilayer macroscopic phase even at the highest peptide concentrations investigated, with an oblate orientational distribution of the phospholipids at a peptide/lipid ratio of 1:5. At pH 5, as it occurs in the endosome, the alignment of LAH4-L1 at a peptide/lipid ratio of 1:25 is predominantly parallel to POPC/POPS 3:1 bilayers (prolate deformation) when at the same time it induces a considerable decrease of the deuterium order parameter of POPC/2H31-POPS 3:1. In addition, when studied in mechanically supported lipid membranes, a pronounced disordering of the phospholipid alignment is observed. In the presence of even higher peptide concentrations, lipid spectra are observed that suggest the formation of magnetically oriented or isotropic bicelles. This membrane-disruptive effect is enhanced for gel phase DMPC membranes. By protonation of the four histidines in acidic environments, the overall charge and hydrophobic moment of LAH4-L1 considerably change, and much of the peptide is released from the cargo. Thus, the amphipathic peptide sequences become available to disrupt the endosomal membrane and to assure highly efficient release from this organelle.
机译:富含组氨酸的设计肽LAH4-L1对多种货物(包括核酸,多肽,腺相关病毒和纳米点)表现出抗微生物和有效的细胞穿透活性。肽与货物之间形成的非共价复合物通过内体途径进入细胞,其中pH从中性变为酸性。在这里,我们使用静态固态NMR光谱研究了肽与磷脂双层的膜相互作用及其膜拓扑。取向的 15 N固态NMR表明,在由1-棕榈酰基-2-油酰基-sn-甘油-3-磷酸胆碱(POPC)和1-棕榈酰基-2-油酰基-sn-甘油组成的膜中-3-磷酸-L-丝氨酸(POPS)3:1 mol / mol,在中性pH下,该肽采用跨膜拓扑结构。此外, 31 P和 2 H固态NMR光谱表明,液晶1,2-二肉豆蔻酰基-sn-甘油-3-磷酸胆碱(DMPC)和POPC / POPS 3:1脂质体即使在所研究的最高肽浓度下也能保留双层宏观相,并且在肽/脂质比为1:5时磷脂呈扁桃状定向分布。在pH值为5的情况下,由于内体中的LAH4-L1在肽/脂质比为1:25时的排列主要平行于POPC / POPS 3:1双层(长形变形),同时它诱导了POPC / 2 H31-POPS 3:1的氘序参数大大降低。另外,当在机械支撑的脂质膜上进行研究时,观察到磷脂排列的明显混乱。在甚至更高的肽浓度存在下,观察到的脂质谱表明形成了磁性取向或各向同性的双细胞。对于凝胶相DMPC膜,这种破坏膜的作用得到增强。通过在酸性环境中对四个组氨酸进行质子化,LAH4-L1的总电荷和疏水力矩会发生很大变化,并且许多肽会从货物中释放出来。因此,两亲性肽序列可用于破坏内体膜并确保从该细胞器高效释放。

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