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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Structure and dynamics of the lipid modifications of a transmembrane alpha-helical peptide determined by (2)H solid-state NMR spectroscopy.
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Structure and dynamics of the lipid modifications of a transmembrane alpha-helical peptide determined by (2)H solid-state NMR spectroscopy.

机译:跨膜α-螺旋肽的脂质修饰的结构和动力学由(2)H固态NMR光谱确定。

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The fusion of biological membranes is mediated by integral membrane proteins with alpha-helical transmembrane segments. Additionally, those proteins are often modified by the covalent attachment of hydrocarbon chains. Previously, a series of de novo designed alpha-helical peptides with mixed Leu/Val sequences was presented, mimicking fusiogenically active transmembrane segments in model membranes (Hofmann et al., Proc. Natl. Acad. Sci. USA 101 (2004) 14776-14781). From this series, we have investigated the peptide LV16 (KKKW LVLV LVLV LVLV LVLV KKK), which was synthesized featuring either a free N-terminus or a saturated N-acylation of 2, 8, 12, or 16 carbons. We used (2)H and (3)(1)P NMR spectroscopy to investigate the structure and dynamics of those peptide lipid modifications in POPC and DLPC bilayers and compared them to the hydrocarbon chains of the surrounding membrane. Except for the C2 chain, all peptide acyl chains were found to insert well into the membrane. This can be explained by the high local lipid concentrations the N-terminal lipid chains experience. Further, the insertion of these peptides did not influence the membrane structure and dynamics as seen from the (2)H and (3)(1)P NMR data. In spite of the fact that the longer acyl chains insert into the membrane, they do not adapt their lengths to the thickness of the bilayer. Even the C16 lipid chain on the peptide, which could match the length of the POPC palmitoyl chain, exhibited lower order parameters in the upper chain, which get closer and finally reach similar values in the lower chain region. (2)H NMR square law plots reveal motions of slightly larger amplitudes for the peptide lipid chains compared to the surrounding phospholipids. In spite of the significantly different chain lengths of the acylations, the fraction of gauche defects in the inserted chains is constant.
机译:生物膜的融合是由具有α-螺旋跨膜片段的完整膜蛋白介导的。另外,那些蛋白质经常被烃链的共价连接所修饰。以前,提出了一系列具有混合Leu / Val序列的从头设计的α螺旋肽,其模仿了模型膜中的融合活性的跨膜片段(Hofmann等人,Proc。Natl。Acad。Sci。USA 101(2004)14776- 14781)。从这个系列中,我们研究了肽LV16(KKKW LVLV LVLV LVLV LVLV KKK),该肽的特征是具有2个,8个,12个或16个碳原子的游离N末端或饱和N-酰化。我们使用(2)H和(3)(1)P NMR光谱研究了POPC和DLPC双层中那些肽脂质修饰的结构和动力学,并将它们与周围膜的烃链进行了比较。除C2链外,发现所有肽酰基链都可以很好地插入膜中。这可以通过N端脂质链经历的高局部脂质浓度来解释。而且,从(2)H和(3)(1)P NMR数据看,这些肽的插入不影响膜结构和动力学。尽管较长的酰基链插入膜中,但它们的长度并未适应双层的厚度。甚至肽上的C16脂质链(可以与POPC棕榈酰基链的长度匹配)在上链中也显示出较低阶参数,这些参数变得更近,最终在下链区域中达到相似的值。 (2)H NMR方律图揭示了与周围的磷脂相比,肽脂质链的振幅稍大的运动。尽管酰化的链长明显不同,但是插入链中的薄纱缺陷分数是恒定的。

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