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首页> 外文期刊>Biochemistry >Sensitivity of single membrane-spanning alpha-helical peptides tohydrophobic mismatch with a lipid bilayer: Effects on backbone structure,orientation, and extent of membrane incorporation
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Sensitivity of single membrane-spanning alpha-helical peptides tohydrophobic mismatch with a lipid bilayer: Effects on backbone structure,orientation, and extent of membrane incorporation

机译:单跨膜的α-螺旋肽对脂质双层疏水错配的敏感性:对骨架结构,方向和膜掺入程度的影响

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The extent of matching of membrane hydrophobic thickness with the hydrophobic length of transmembrane protein segments potentially constitutes a major director of membrane organization. Therefore, the extent of mismatch that can be compensated, and the types of membrane rearrangements that result, can provide valuable insight into membrane functionality. In the present study, a large family of synthetic peptides and Lipids is used to investigate a range of mismatch situations. Peptide conformation, orientation, and extent of incorporation are assessed by infrared spectroscopy, tryptophan fluorescence, circular dichroism, and sucrose gradient centrifugation. It is shown that peptide backbone structure is not significantly affected by mismatch, even when the extent of mismatch is large. Instead, this study demonstrates that for tryptophan-flanked peptides the dominant response of a membrane to large mismatch is that the extent of incorporation is reduced, when the peptide is both too short and too long. With increasing mismatch, a smaller fraction of peptide is incorporated into the lipid bilayer, and a larger fraction is present in extramembranous aggregates. Relatively long peptides that remain incorporated in the bilayer have a small tilt angle with respect to the membrane normal. The observed effects depend on the nature of the flanking residues: long tryptophan-flanked peptides do not associate well with thin bilayers, while equisized lysine-flanked peptides associate completely, thus supporting the notion that tryptophan and lysine interact differently with membrane-water interfaces. The different properties that aromatic and charged flanking residues impart on transmembrane protein segments are discussed in relation to protein incorporation in biological systems.
机译:膜疏水厚度与跨膜蛋白区段的疏水长度匹配的程度可能构成膜组织的主要方向。因此,可以补偿的错配程度以及所导致的膜重排类型可以提供对膜功能性的宝贵见解。在本研究中,大量的合成肽和脂质被用于研究一系列错配情况。肽构象,方向和掺入程度通过红外光谱,色氨酸荧光,圆二色性和蔗糖梯度离心法评估。结果表明,即使错配程度很大,肽主链结构也不会受到错配的明显影响。相反,这项研究表明,对于色氨酸侧翼肽,膜对大错配的主要反应是,当肽太短和太长时,掺入的程度都会降低。随着错配的增加,较小比例的肽被掺入脂质双层中,而较大比例的膜存在于膜外聚集物中。保持结合在双层中的相对长的肽相对于膜法线具有小的倾斜角。观察到的效果取决于侧翼残基的性质:长色氨酸侧翼的肽与薄双层分子结合不佳,而相等的赖氨酸侧翼的肽则完全缔合,因此支持色氨酸和赖氨酸与膜-水界面相互作用不同的观点。关于在生物系统中掺入蛋白质,讨论了芳香族和带电侧翼残基赋予跨膜蛋白质区段的不同性质。

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