Faculty of Engineering, Yokohama National University, Yokohama, Japan.
Biophys J. 2010 Nov 17;99(10):3282-9. doi: 10.1016/j.bpj.2010.09.060.
Bombolitin II (BLT2) is one of the hemolytic heptadecapeptides originally isolated from the venom of a bumblebee. Structure and orientation of BLT2 bound to 1,2-dipalmitoyl-sn-glycero-3-phosphocholine (DPPC) membranes were determined by solid-state (31)P and (13)C NMR spectroscopy. (31)P NMR spectra showed that BLT2-DPPC membranes were disrupted into small particles below the gel-to-liquid crystalline phase transition temperature (T(c)) and fused to form a magnetically oriented vesicle system where the membrane surface is parallel to the magnetic fields above the T(c). (13)C NMR spectra of site-specifically (13)C-labeled BLT2 at the carbonyl carbons were observed and the chemical shift anisotropies were analyzed to determine the dynamic structure of BLT2 bound to the magnetically oriented vesicle system. It was revealed that the membrane-bound BLT2 adopted an α-helical structure, rotating around the membrane normal with the tilt angle of the helical axis at 33°. Interatomic distances obtained from rotational-echo double-resonance experiments further showed that BLT2 adopted a straight α-helical structure. Molecular dynamics simulation performed in the BLT2-DPPC membrane system showed that the BLT2 formed a straight α-helix and that the C-terminus was inserted into the membrane. The α-helical axis is tilted 30° to the membrane normal, which is almost the same as the value obtained from solid-state NMR. These results suggest that the membrane disruption induced by BLT2 is attributed to insertion of BLT2 into the lipid bilayers.
蜂毒素 II (BLT2) 是一种溶血十七肽,最初从大黄蜂毒液中分离得到。通过固态 (31)P 和 (13)C NMR 光谱确定了 BLT2 与 1,2-二棕榈酰基-sn-甘油-3-磷酸胆碱 (DPPC) 膜结合的结构和取向。(31)P NMR 谱表明,BLT2-DPPC 膜在凝胶到液晶相转变温度 (T(c)) 以下被破坏成小颗粒,并融合形成一个具有磁定向的囊泡系统,其中膜表面与磁场平行高于 T(c)。观察到了在羰基碳上进行了定点 (13)C 标记的 BLT2 的 (13)C NMR 谱,并分析了化学位移各向异性以确定结合到磁定向囊泡系统的 BLT2 的动态结构。结果表明,膜结合的 BLT2 采用α-螺旋结构,围绕膜法线旋转,螺旋轴的倾斜角为 33°。从旋转回波双共振实验获得的原子间距离进一步表明,BLT2 采用了直的α-螺旋结构。在 BLT2-DPPC 膜系统中进行的分子动力学模拟表明,BLT2 形成了直的α-螺旋,并且 C 末端插入到膜中。α-螺旋轴相对于膜法线倾斜 30°,这与固态 NMR 获得的值几乎相同。这些结果表明,BLT2 引起的膜破坏归因于 BLT2 插入脂质双层。