首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Cospreading of Anionic Phospholipids with Peptides of the Structure (KX)(4)K at the Air Water Interface: Influence of Lipid Headgroup Structure and Hydrophobicity of the Peptide on Monolayer Behavior
【24h】

Cospreading of Anionic Phospholipids with Peptides of the Structure (KX)(4)K at the Air Water Interface: Influence of Lipid Headgroup Structure and Hydrophobicity of the Peptide on Monolayer Behavior

机译:在空气界面处的结构(Kx)(4)k的肽的阴离子磷脂的构装:脂质头组结构和肽对单层行为的疏水性的影响

获取原文
获取原文并翻译 | 示例
           

摘要

Mixtures of anionic phospholipids (PG, PA, PS, and CL) with cationic peptides were cospread from a common organic solvent at the air water interface. The compression of the mixed film was combined with epifluorescence microscopy or infrared reflection adsorption spectroscopy (IRRAS) to gain information on the interactions of the peptide with the different lipids. To evaluate the influence of the amino acid X of peptides with the sequence (KX)(4)K on the binding, 1,2-dipalmitoyl-sn-glycero-3-phosphoglycerol (DPP G) was mixed with different peptides with increasing hydrophobicity of the uncharged amino acid X. The monolayer isotherms of DPPG/(KX)(4)K mixtures show an increased area for the lift-off due to incorporation of the peptide into the liquid-expanded (LE) state of the lipid. The surface pressure for the transition from LE to the liquid-condensed (LC) state is slightly increased for peptides with amino acids X with moderate hydrophobicity. For the most hydrophobic peptide (KL)(4)K two plateaus are seen at a charge ratio PG to K of 5:1, and a strongly increased transition pressure is observed for a charge ratio of 1:1. Epifluorescence microscopy images and infrared spectroscopy show that the lower plateau corresponds to the LE LC phase transition of the lipid. The upper plateau is connected with a squeeze-out of the peptide into the subphase. To test the influence of the lipid headgroup structure on peptide binding (KL)(4)K was cospread with different anionic phospholipids. The shift of the isotherm to larger areas for lift-off and to higher surface pressure for the LE-LC phase transition was observed for all tested anionic lipids. Epifluorescence microscopy reveals the formation of LC domains with extended filaments indicating a decrease in line tension due to accumulation of the peptides at the LC-domain boundaries. This effect depends on the size of the headgroup of the anionic phospholipid.
机译:具有阳离子肽的阴离子磷脂(PG,PA,PS和Cl)的混合物是来自空气界面处的普通有机溶剂的腐蚀。将混合膜的压缩与离荧光显微镜或红外反射吸附光谱(IRRAS)组合,以获得肽与不同脂质的相互作用的信息。为了评估肽的氨基酸X与序列(Kx)(4)k上的序列(4)K的影响,将1,2-Dipalmitoyl-Sn-甘油-3-磷甘油(DPP G)与不同肽混合,随着疏水性的增加没有充分的氨基酸X. DPPG /(Kx)(4)K混合物的单层等温线显示出由于肽掺入脂质膨胀(Le)状态而增加的剥离面积增加。对于具有中等疏水性的氨基酸X的肽,从Le到液体缩合(LC)状态的过渡的表面压力略微增加。对于最疏水性肽(KL)(4)K,在5:1的电荷比Pg至K的电荷比Pg至K中看到两个平台,并且对电荷比为1:1的电力比。渗流荧光显微镜图像和红外光谱表明,下平台对应于脂质的LE LC相变。上平台与挤出肽的挤出物连接到亚相中。为了测试脂质头组结构对肽结合(KL)(4)k的影响,用不同的阴离子磷脂是腐蚀的。对于所有测试的阴离子脂质,观察到等温线的移位到较大的升力区域和对Le-LC相转变的更高表面压力。渗流荧光显微镜揭示了LC结构域的形成,其延伸长丝表示由于LC域边界的肽的积累而导致线张力的降低。这种效果取决于阴离子磷脂的头组的大小。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号