Chekmenev Eduard Y, Jones Shiela M, Nikolayeva Yelena N, Vollmar Breanna S, Wagner Tim J, Gor'kov Peter L, Brey William W, Manion McKenna N, Daugherty Ken C, Cotten Myriam
Center for Interdisciplinary Magnetic Resonance, National High Magnetic Field Laboratory, 1800 East Paul Dirac Drive, Tallahassee, Florida 32310, USA.
J Am Chem Soc. 2006 Apr 26;128(16):5308-9. doi: 10.1021/ja058385e.
High magnetic field solid-state NMR was performed on amphipathic cationic antimicrobial peptides from fish to characterize their secondary structure and orientation in hydrated phospholipid bilayers. High-resolution distance and orientational restraints on 13C- and 15N-labeled amidated piscidins 1 and 3 provided site-specific information establishing alpha-helicity and an orientation parallel to the membrane surface. Few membrane-bound natural peptides with this topology have been structurally studied at high resolution in the presence of hydrated lipid bilayers. This orientation was foreseen since the partitioning of amphipathic cationic antimicrobial peptides at the water-bilayer interface allows for favorable peptide-lipid interactions, and it may be related to the mechanism of action. The enhanced resolution obtained at 900 MHz evidences a determinant advantage of ultra-high-field NMR for the structural determination of multiple-labeled peptides and proteins.
利用高磁场固态核磁共振技术对鱼类来源的两亲性阳离子抗菌肽进行了研究,以表征其在水合磷脂双层中的二级结构和取向。对13C和15N标记的酰胺化杀鱼菌素1和3进行的高分辨率距离和取向限制提供了位点特异性信息,确定了α-螺旋结构以及与膜表面平行的取向。在水合脂质双层存在的情况下,很少有具有这种拓扑结构的膜结合天然肽被高分辨率地进行结构研究。这种取向是可以预见的,因为两亲性阳离子抗菌肽在水-双层界面的分配有利于肽-脂质相互作用,并且可能与作用机制有关。在900 MHz下获得的更高分辨率证明了超高场核磁共振在多标记肽和蛋白质结构测定方面的决定性优势。