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二肽帕拉溶素β-丙氨酸-酪氨酸与氨基酸谷氨酸与磷脂双层的相互作用。

Interactions of the dipeptide paralysin beta-Ala-Tyr and the aminoacid Glu with phospholipid bilayers.

作者信息

Kyrikou Ioanna, Benetis Nikolas P, Chatzigeorgiou Petros, Zervou Maria, Viras Kyriakos, Poulos Constantine, Mavromoustakos Thomas

机构信息

Institute of Organic and Pharmaceutical Chemistry, National Hellenic Research Foundation, Vas. Constantinou 48, Athens 11635, Greece.

出版信息

Biochim Biophys Acta. 2008 Jan;1778(1):113-24. doi: 10.1016/j.bbamem.2007.09.019. Epub 2007 Oct 2.

Abstract

Existing evidence points out that the biological activity of beta-Ala-Tyr may in part related to its interactions with the cell membranes. For comparative reasons the effects of Glu were also examined using identical techniques and conditions. In order to examine their thermal and dynamic effects on membrane bilayers a combination of DSC, Raman and solid state NMR spectroscopy on DPPC/water model membranes were applied and the results were compared. DSC data showed that Glu perturbs to a greater degree the model membrane compared to beta-Ala-Tyr. Thus, alteration of the phase transition temperature and half width of the peaks, abolishment of the pretransition and influence on the enthalpy of the phase transition were more pronounced in the Glu loaded bilayers. Raman spectroscopy showed that incorporation of Glu in DPPC/water bilayers increased the order in the bilayers in contrast to the effect of the dipeptide. Several structural and dynamical properties of the DPPC multilamellar bilayers with and without the dipeptide or Glu were compared using high resolution C-13 MAS (Magic Angle Spinning) spectra and spectral simulations of inhomogeneously broadened, stationary P-31 NMR lineshapes measured under CP (Cross-polarization) conditions. These methods revealed that the aminoacid Glu binds in the close realm of the phosphate in the hydrophilic headgroup of DPPC while beta-Ala-Tyr is located more deeply inside the hydrophobic zone of the bilayer. The P-31 NMR simulations indicated restricted fast rotary motion of the phospholipids about their long axes in the organized bilayer structure. Finally, by the applied methodologies it is concluded that the two molecules under study exert dissimilar thermal and dynamic effects on lipid bilayers, the Glu improving significantly the packing of the lipids in contrast to the smaller and opposite effect of the dipeptide.

摘要

现有证据指出,β-丙氨酰-酪氨酸的生物活性可能部分与其与细胞膜的相互作用有关。出于比较的目的,还使用相同的技术和条件研究了谷氨酸的作用。为了研究它们对膜双层的热效应和动力学效应,对DPPC/水模型膜应用了差示扫描量热法(DSC)、拉曼光谱和固态核磁共振光谱的组合,并对结果进行了比较。DSC数据表明,与β-丙氨酰-酪氨酸相比,谷氨酸对模型膜的扰动程度更大。因此,在负载谷氨酸的双层膜中,相变温度和峰的半高宽的改变、预转变的消除以及对相变焓的影响更为明显。拉曼光谱表明,与二肽的作用相反,在DPPC/水双层膜中掺入谷氨酸增加了双层膜中的有序性。使用高分辨率C-13魔角旋转(MAS)光谱以及在交叉极化(CP)条件下测量的非均匀加宽的静态P-31 NMR线形的光谱模拟,比较了含有和不含有二肽或谷氨酸的DPPC多层双层膜的几种结构和动力学性质。这些方法表明,氨基酸谷氨酸结合在DPPC亲水头部基团中磷酸盐的附近区域,而β-丙氨酰-酪氨酸则更深地位于双层膜的疏水区域内。P-31 NMR模拟表明,在有组织的双层膜结构中,磷脂围绕其长轴的快速旋转运动受到限制。最后,通过所应用的方法得出结论,所研究的这两种分子对脂质双层具有不同的热效应和动力学效应,谷氨酸显著改善了脂质的堆积,而二肽的作用则较小且相反。

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