Afonin Sergii, Dürr Ulrich H N, Glaser Ralf W, Ulrich Anne S
Forschungszentrum Karlsruhe, IFIA, POB 3640, 76021 Karlsruhe, Germany.
Magn Reson Chem. 2004 Feb;42(2):195-203. doi: 10.1002/mrc.1340.
Solid state (19)F NMR revealed the conformation and alignment of the fusogenic peptide sequence B18 from the sea urchin fertilization protein bindin embedded in flat phospholipid bilayers. Single (19)F labels were introduced into nine distinct positions along the wild-type sequence by substituting each hydrophobic amino acid, one by one, with L-4-fluorophenylglycine. Their anisotropic chemical shifts were measured in uniaxially oriented membrane samples and used as orientational constraints to model the peptide structure in the membrane-bound state. Previous (1)H NMR studies of B18 in 30% TFE and in detergent micelles had shown that the peptide structure consists of two alpha-helical segments that are connected by a flexible hinge. This helix-break-helix motif was confirmed here by the solid-state (19)F NMR data, while no other secondary structure (beta-sheet, 3(10)-helix) was compatible with the set of orientational constraints. For both alpha-helical segments we found that the helical conformation extends all the way to the respective N- and C-termini of the peptide. Analysis of the corresponding tilt and azimuthal rotation angles showed that the N-terminal helix of B18 is immersed obliquely into the bilayer (at a tilt angle tau approximately 54 degrees), whereas the C-terminus is peripherally aligned (tau approximately 91 degrees). The azimuthal orientation of the two segments is consistent with the amphiphilic distribution of side-chains. The observed 'boomerang'-like mode of insertion into the membrane may thus explain how peptide binding leads to lipid dehydration and acyl chain perturbation as a prerequisite for bilayer fusion to occur.
固态(19)F核磁共振揭示了嵌入扁平磷脂双层中的海胆受精蛋白结合素的融合肽序列B18的构象和排列。通过将每个疏水性氨基酸逐一替换为L-4-氟苯甘氨酸,在野生型序列的九个不同位置引入了单个(19)F标记。在单轴取向的膜样品中测量了它们的各向异性化学位移,并将其用作取向约束,以模拟膜结合状态下的肽结构。先前对B18在30%三氟乙醇和去污剂胶束中的(1)H核磁共振研究表明,该肽结构由两个通过柔性铰链连接的α-螺旋段组成。固态(19)F核磁共振数据在此证实了这种螺旋-断裂-螺旋基序,而没有其他二级结构(β-折叠、3(10)-螺旋)与该组取向约束兼容。对于两个α-螺旋段,我们发现螺旋构象一直延伸到肽的相应N端和C端。对相应的倾斜角和方位旋转角的分析表明,B18的N端螺旋倾斜地浸入双层中(倾斜角τ约为54度),而C端在外围排列(τ约为91度)。两个段的方位取向与侧链的两亲分布一致。因此,观察到的插入膜中的“回飞棒”状模式可以解释肽结合如何导致脂质脱水和酰基链扰动,这是双层融合发生的先决条件。