Department of Chemistry and Biochemistry, Miami University, Oxford, OH, 45056, United States.
Department of Chemistry and Biochemistry, Miami University, Oxford, OH, 45056, United States.
Chem Phys Lipids. 2018 Jul;213:124-130. doi: 10.1016/j.chemphyslip.2018.04.004. Epub 2018 Apr 22.
Aligned CW-EPR membrane protein samples provide additional topology interactions that are absent from conventional randomly dispersed samples. These samples are aptly suited to studying antimicrobial peptides because of their dynamic peripheral topology. In this study, four consecutive substitutions of the model antimicrobial peptide magainin 2 were synthesized and labeled with the rigid TOAC spin label. The results revealed the helical tilts to be 66° ± 5°, 76° ± 5°, 70° ± 5°, and 72° ± 5° for the TOAC substitutions H7, S8, A9, and K10 respectively. These results are consistent with previously published literature. Using the EPR (electron paramagnetic resonance) mechanical alignment technique, these substitutions were used to critically assess the topology and surface orientation of the peptide with respect to the membrane. This methodology offers a rapid and simple approach to investigate the structural topology of antimicrobial peptides.
对齐的 CW-EPR 膜蛋白样品提供了传统随机分散样品中不存在的额外拓扑相互作用。这些样品非常适合研究抗菌肽,因为它们具有动态的外围拓扑结构。在这项研究中,合成了四个连续取代的模型抗菌肽magainin 2,并标记上刚性的 TOAC 自旋标记。结果表明,TOAC 取代 H7、S8、A9 和 K10 的螺旋倾斜角分别为 66°±5°、76°±5°、70°±5°和 72°±5°。这些结果与先前发表的文献一致。使用 EPR(电子顺磁共振)机械对准技术,这些取代物被用于批判性地评估肽与膜的拓扑结构和表面取向。这种方法为研究抗菌肽的结构拓扑提供了一种快速而简单的方法。