Killian J A, Taylor M J, Koeppe R E
Department of Biochemistry of Membranes, University of Utrecht, The Netherlands.
Biochemistry. 1992 Nov 24;31(46):11283-90. doi: 10.1021/bi00161a004.
The orientation of the valine-1 side chain of gramicidin was determined by solid-state 2H NMR using valine-1-deuterated (d8) gramicidin. The peptide was incorporated into DMPC bilayers that were oriented between glass plates. When the plates were oriented with their normal perpendicular to the magnetic field, four quadrupolar splittings were observed of 106, 68, 9.7, and 2.0 kHz. These resonances were assigned to C alpha D, C beta D, and the deuterons of each of the C gamma D3 methyl groups, respectively. The average orientation of the various C-D bonds was calculated with respect to the helix axis. The angle obtained for the C alpha-D resonance was consistent with a single-stranded beta 6.3-helical model for the backbone but not with double-helical models. The angles of the side chain were then fitted to a model for the right-handed beta 6.3-helix. Rotation of the valine-1 side chain yielded a set of torsion angles that matched the angles as determined from the 2H NMR measurements. The corresponding orientation of the valine-1 side chain (chi 1 = -5 degrees) was found to be quite unusual, but it explains well the importance of a branched side chain at position 1 for channel formation and stability. A van der Waals interaction between valine-1 of one monomer and alanine-5 of the other helps to stabilize the gramicidin dimer.
使用缬氨酸 -1-氘代(d8)短杆菌肽,通过固态2H NMR确定了短杆菌肽缬氨酸 -1侧链的取向。该肽被掺入夹在玻璃板之间的DMPC双层中。当玻璃板的法线垂直于磁场取向时,观察到四个四极分裂,分别为106、68、9.7和2.0 kHz。这些共振分别被指定为CαD、CβD以及每个CγD3甲基的氘核。计算了各种C-D键相对于螺旋轴的平均取向。从Cα-D共振获得的角度与主链的单链β6.3螺旋模型一致,但与双螺旋模型不一致。然后将侧链的角度拟合到右手β6.3螺旋模型中。缬氨酸 -1侧链的旋转产生了一组扭转角,这些扭转角与通过2H NMR测量确定的角度相匹配。发现缬氨酸 -1侧链的相应取向(χ1 = -5度)非常不寻常,但它很好地解释了1位分支侧链对于通道形成和稳定性的重要性。一个单体的缬氨酸 -1与另一个单体的丙氨酸 -5之间的范德华相互作用有助于稳定短杆菌肽二聚体。