首页> 美国卫生研究院文献>Biophysical Journal >Conformation and dynamics of melittin bound to magnetically oriented lipid bilayers by solid-state (31)P and (13)C NMR spectroscopy.
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Conformation and dynamics of melittin bound to magnetically oriented lipid bilayers by solid-state (31)P and (13)C NMR spectroscopy.

机译:蜂毒素的构象和动力学通过固态(31)P和(13)C NMR光谱结合到磁性取向的脂质双层上。

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摘要

The conformation and dynamics of melittin bound to the dimyristoylphosphatidylcholine (DMPC) bilayer and the magnetic orientation in the lipid bilayer systems were investigated by solid-state (31)P and (13)C NMR spectroscopy. Using (31)P NMR, it was found that melittin-lipid bilayers form magnetically oriented elongated vesicles with the long axis parallel to the magnetic field above the liquid crystalline-gel phase transition temperature (T(m) = 24 degrees C). The conformation, orientation, and dynamics of melittin bound to the membrane were further determined by using this magnetically oriented lipid bilayer system. For this purpose, the (13)C NMR spectra of site-specifically (13)C-labeled melittin bound to the membrane in the static, fast magic angle spinning (MAS) and slow MAS conditions were measured. Subsequently, we analyzed the (13)C chemical shift tensors of carbonyl carbons in the peptide backbone under the conditions where they form an alpha-helix and reorient rapidly about the average helical axis. Finally, it was found that melittin adopts a transmembrane alpha-helix whose average axis is parallel to the bilayer normal. The kink angle between the N- and C-terminal helical rods of melittin in the lipid bilayer is approximately 140 degrees or approximately 160 degrees, which is larger than the value of 120 degrees determined by x-ray diffraction studies. Pore formation was clearly observed below the T(m) in the initial stage of lysis by microscope. This is considered to be caused by the association of melittin molecules in the lipid bilayer.
机译:通过固态(31)P和(13)C NMR光谱研究了结合到二肉豆蔻酰基磷脂酰胆碱(DMPC)双层上的蜂毒素的构象和动力学以及脂质双层系统中的磁取向。使用(31)P NMR,发现蜂毒素-脂质双层形成磁性取向的细长囊泡,其长轴平行于高于液晶-凝胶相变温度(T(m)= 24摄氏度)的磁场。通过使用这种磁性取向的脂质双层系统,进一步确定了结合到膜上的蜂毒素的构象,取向和动力学。为此,在静态,快速幻角旋转(MAS)和慢速MAS条件下,测量了与膜结合的位点特异性(13)C标记的蜂毒素的(13)C NMR光谱。随后,我们分析了在肽骨架中羰基碳形成α-螺旋并围绕平均螺旋轴快速重新定向的条件下,羰基碳的(13)C化学位移张量。最后,发现蜂毒肽采用跨膜α-螺旋,其平均轴平行于双层法线。脂质双层中蜂毒肽的N-末端螺旋杆和C-末端螺旋杆之间的扭折角约为140度或约160度,其大于通过X射线衍射研究确定的120度的值。在显微镜裂解的初始阶段,在T(m)以下清楚地观察到孔的形成。认为这是由于脂质双层中蜂毒肽分子的缔合引起的。

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