Biological Physics Group, Department of Physics, Carnegie Mellon University, Pittsburgh, PA, 15213, USA.
Center for Neutron Research, National Institute of, Standards and Technology, Gaithersburg, MD, 20899, USA.
Chemistry. 2020 May 15;26(28):6247-6256. doi: 10.1002/chem.202000212. Epub 2020 Apr 28.
In the quest for new antibiotics, two novel engineered cationic antimicrobial peptides (eCAPs) have been rationally designed. WLBU2 and D8 (all 8 valines are the d-enantiomer) efficiently kill both Gram-negative and -positive bacteria, but WLBU2 is toxic and D8 nontoxic to eukaryotic cells. We explore protein secondary structure, location of peptides in six lipid model membranes, changes in membrane structure and pore evidence. We suggest that protein secondary structure is not a critical determinant of bactericidal activity, but that membrane thinning and dual location of WLBU2 and D8 in the membrane headgroup and hydrocarbon region may be important. While neither peptide thins the Gram-negative lipopolysaccharide outer membrane model, both locate deep into its hydrocarbon region where they are primed for self-promoted uptake into the periplasm. The partially α-helical secondary structure of WLBU2 in a red blood cell (RBC) membrane model containing 50 % cholesterol, could play a role in destabilizing this RBC membrane model causing pore formation that is not observed with the D8 random coil, which correlates with RBC hemolysis caused by WLBU2 but not by D8.
在寻找新抗生素的过程中,两种新型设计的阳离子抗菌肽(eCAPs)被合理设计出来。WLBU2 和 D8(所有 8 个缬氨酸均为 d-对映体)能够有效地杀死革兰氏阴性菌和阳性菌,但 WLBU2 对真核细胞有毒,而 D8 则无毒。我们研究了蛋白质二级结构、肽在六种脂质模型膜中的位置、膜结构变化和孔证据。我们认为蛋白质二级结构不是杀菌活性的关键决定因素,但 WLBU2 和 D8 在膜头部和烃区的双重位置以及膜变薄可能很重要。虽然这两种肽都不能使革兰氏阴性脂多糖外膜模型变薄,但它们都能深入到其烃区,在那里它们被预先准备好自行进入周质。在含有 50%胆固醇的红细胞(RBC)膜模型中,WLBU2 的部分α-螺旋二级结构可能在破坏该 RBC 膜模型中发挥作用,导致孔形成,而 D8 的无规卷曲则不会观察到这种情况,这与 WLBU2 引起的 RBC 溶血而 D8 不会引起溶血相关。