Kelsh L P, Ellena J F, Cafiso D S
Department of Chemistry, University of Virginia, Charlottesville 22901.
Biochemistry. 1992 Jun 9;31(22):5136-44. doi: 10.1021/bi00137a007.
Alamethicin is a channel-forming peptide antibiotic that produces a highly voltage-dependent conductance in planar bilayers. To provide insight into the mechanisms for its voltage dependence, the dynamics of the peptide were examined in solution using nuclear magnetic resonance. Natural-abundance 13C spin-lattice relaxation rates and 13C-1H nuclear Overhauser effects of alamethicin were measured at two magnetic field strengths in methanol. This information was interpreted using a model-free approach to obtain values for the overall correlation times as well as the rates and amplitudes of the internal motions of the peptide. The picosecond, internal motions of alamethicin are highly restricted along the peptide backbone and indicate that it behaves as a rigid helical rod in solution. The side chain carbons exhibit increased segmental motion as their distance from the peptide backbone is increased; however, these motions are not unrestricted. Methyl group dynamics are also consistent with the restricted motions observed for the backbone carbons. There is no evidence from these dynamics measurements for a hinged motion of the peptide about proline-14. Alamethicin appears to be slightly less structured in methanol than in the membrane; as a result, alamethicin is also expected to behave as a rigid helix in the membrane. This suggests that the gating of this peptide involves changes in the orientation of the entire helix, rather than the movement of a segment of the peptide backbone.
短杆菌肽A是一种可形成通道的肽抗生素,能在平面双分子层中产生高度电压依赖性电导。为深入了解其电压依赖性机制,利用核磁共振在溶液中研究了该肽的动力学。在甲醇中于两种磁场强度下测量了短杆菌肽A的天然丰度13C自旋晶格弛豫率和13C-1H核Overhauser效应。利用无模型方法解释这些信息,以获得整体相关时间以及肽内部运动的速率和幅度值。短杆菌肽A在皮秒级的内部运动沿肽主链受到高度限制,表明它在溶液中表现为刚性螺旋杆。随着侧链碳与肽主链距离的增加,其片段运动增加;然而,这些运动并非不受限制。甲基动力学也与主链碳观察到的受限运动一致。这些动力学测量没有证据表明该肽围绕脯氨酸-14发生铰链运动。短杆菌肽A在甲醇中的结构似乎比在膜中略少;因此,预计短杆菌肽A在膜中也表现为刚性螺旋。这表明该肽的门控涉及整个螺旋方向的变化,而不是肽主链片段的移动。