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首页> 外文期刊>Journal of peptide science: An official publication of the European Peptide Society >Nonpolar interactions between trans-membrane helical EGF peptide and phosphatidylcholines, sphingomyelins and cholesterol. Molecular dynamics simulation studies
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Nonpolar interactions between trans-membrane helical EGF peptide and phosphatidylcholines, sphingomyelins and cholesterol. Molecular dynamics simulation studies

机译:跨膜螺旋EGF肽与磷脂酰胆碱,鞘磷脂和胆固醇之间的非极性相互作用。分子动力学模拟研究

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摘要

A molecular dynamics simulation study of four lipid bilayers with inserted trans-membrane helical fragment of epithelial growth factor (EGF) receptor (EGF peptide) was performed. The lipid bilayers differ in their lipid composition and consist of (i) unsaturated phosphatidylcholine (palmitoyloleoylphosphatidylcholine, POPC), (ii) POPC and 20 mol% of cholesterol (Chol), (iii) sphingomyelin (SM) and 20 mol% of Chol, and (iv) SM and 50 mol% of Chol. Only I out of 26 residues in the EGF-peptide sequence is polar (Thr). The hydrophobic thickness of each bilayer is different but shorter than the length of the peptide and so, due to hydrophobic mismatch, the inserted peptide is tilted in each bilayer. Additionally, in the POPC bilayer, which is the thinnest, the peptide loses its helical structure in a short three-amino acid fragment. This facilitates bending of the peptide and burying all hydrophobic amino acids inside the membrane core (Figure 1(b)). Bilayer lipid composition affects interactions between the peptide and lipids in the membrane core. Chol increases packing of atoms relative to the peptide side chains, and thus increases van der Waals interactions. On average, the packing around the peptide is higher in SM-based bilayers than POPC-based bilayers but for certain amino acids, packing depends on their position relative to the bilayer center. In the bilayer center, packing is higher in POPC-based bilayers, while in regions closer to the interface packing is higher in SM-based bilayers. In general, amino acids with larger side chains interact strongly with lipids, and thus the peptide sequence is important for the pattern of interactions at different membrane depths. This pattern closely resembles the shape of recently published lateral pressure profiles.
机译:分子动力学模拟研究了四个脂质双层与上皮生长因子(EGF)受体(EGF肽)的跨膜螺旋片段插入。脂质双层的脂质组成不同,由(i)不饱和磷脂酰胆碱(palmitoyloleoylphosphatidylcholine,POPC),(ii)POPC和20 mol%的胆固醇(Chol),(iii)鞘磷脂(SM)和20 mol%的Chol组成, (iv)SM和50mol%的Chol。 EGF-肽序列中的26个残基中只有I个是极性的(Thr)。每个双层的疏水性厚度不同,但比肽的长度短,因此,由于疏水性错配,插入的肽在每个双层中倾斜。另外,在最薄的POPC双层中,该肽在短的三个氨基酸片段中丢失了其螺旋结构。这有利于肽的弯曲并将所有疏水性氨基酸掩埋在膜核心内部(图1(b))。双层脂质组成影响肽与膜核心中脂质之间的相互作用。相对于肽侧链,Chol增加了原子的堆积,因此增加了范德华相互作用。平均而言,在基于SM的双层中,肽周围的堆积要高于基于POPC的双层,但是对于某些氨基酸,堆积取决于它们相对于双层中心的位置。在双层中心,在基于POPC的双层中填充较高,而在靠近界面的区域中,基于SM的双层填充较高。通常,具有较大侧链的氨基酸与脂质强烈相互作用,因此肽序列对于不同膜深度的相互作用模式很重要。这种模式非常类似于最近发布的侧向压力曲线的形状。

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