Institute for Chemical Research, Kyoto University, Kyoto, Japan.
Biophys J. 2010 May 19;98(9):1801-8. doi: 10.1016/j.bpj.2010.01.028.
Alamethicin, a member of the peptaibol family of antibiotics, is a typical channel-forming peptide with a helical structure. The self-assembly of the peptide in the membranes yields voltage-dependent channels. In this study, three alamethicin analogs possessing a charged residue (His, Lys, or Glu) on their N-termini were designed with the expectation of stabilizing the transmembrane structure. A slight elongation of channel lifetime was observed for the Lys and Glu analogs. On the other hand, extensive stabilization of certain channel open states was observed for the His analog. This stabilization was predominantly observed in the presence of metal ions such as Zn(2+), suggesting that metal coordination with His facilitates the formation of a supramolecular assembly in the membranes. Channel stability was greatly diminished by acetylation of the N-terminal amino group, indicating that the N-terminal amino group also plays an important role in metal coordination.
α-螺旋抗菌肽是一种典型的具有螺旋结构的通道形成肽,是抗菌肽家族的成员之一。该肽在膜中的自组装产生了电压依赖性通道。在这项研究中,设计了三个在 N 端带有正电荷残基(His、Lys 或 Glu)的 α-螺旋抗菌肽类似物,期望稳定跨膜结构。Lys 和 Glu 类似物的通道寿命略有延长。另一方面,His 类似物对某些通道开放状态的稳定作用更为明显。这种稳定作用主要在 Zn(2+)等金属离子存在下观察到,表明 His 与金属的配位有助于在膜中形成超分子组装。N 端氨基的乙酰化大大降低了通道的稳定性,表明 N 端氨基也在金属配位中起着重要作用。