Wade D, Boman A, Wåhlin B, Drain C M, Andreu D, Boman H G, Merrifield R B
Rockefeller University, New York, NY 10021.
Proc Natl Acad Sci U S A. 1990 Jun;87(12):4761-5. doi: 10.1073/pnas.87.12.4761.
The D enantiomers of three naturally occurring antibiotics--cecropin A, magainin 2 amide, and melittin--were synthesized. In addition, the D enantiomers of two synthetic chimeric cecropin-melittin hybrid peptides were prepared. Each D isomer was shown by circular dichroism to be a mirror image of the corresponding L isomer in several solvent mixtures. In 20% hexafluoro-2-propanol the peptides contained 43-75% alpha-helix. The all-D peptides were resistant to enzymatic degradation. The peptides produced single-channel conductances in planar lipid bilayers, and the D and L enantiomers caused equivalent amounts of electrical conductivity. All of the peptides were potent antibacterial agents against representative Gram-negative and Gram-positive species. The D and L enantiomers of each peptide pair were equally active, within experimental error. Sheep erythrocytes were lysed by both D- and L-melittin but not by either isomer of cecropin A, magainin 2 amide, or the hybrids cecropin A-(1-13)-melittin-(1-13)-NH2 or cecropin A-(1-8)-melittin-(1-18)-NH2. The infectivity of the bloodstream form of the malaria parasite Plasmodium falciparum was also inhibited by the D and L hybrids. It is suggested that the mode of action of these peptides on the membranes of bacteria, erythrocytes, plasmodia, and artificial lipid bilayers may be similar and involves the formation of ion-channel pores spanning the membranes, but without specific interaction with chiral receptors or enzymes.
合成了三种天然抗生素(天蚕素A、蛙皮素2酰胺和蜂毒素)的D对映体。此外,还制备了两种合成的天蚕素-蜂毒素嵌合杂合肽的D对映体。通过圆二色性表明,在几种溶剂混合物中,每种D异构体都是相应L异构体的镜像。在20%的六氟-2-丙醇中,这些肽含有43%-75%的α-螺旋。全D肽对酶促降解具有抗性。这些肽在平面脂质双分子层中产生单通道电导,并且D和L对映体引起等量的电导率。所有这些肽都是针对代表性革兰氏阴性和革兰氏阳性菌种的强效抗菌剂。在实验误差范围内,每对肽的D和L对映体具有同等活性。D-蜂毒素和L-蜂毒素均可使绵羊红细胞裂解,但天蚕素A、蛙皮素2酰胺或杂合肽天蚕素A-(1-13)-蜂毒素-(1-13)-NH2或天蚕素A-(1-8)-蜂毒素-(1-18)-NH2的任何一种异构体均不能使绵羊红细胞裂解。疟原虫恶性疟原虫血液期的感染性也受到D和L杂合肽的抑制。有人提出,这些肽对细菌、红细胞、疟原虫和人工脂质双分子层膜的作用方式可能相似,涉及形成跨越膜的离子通道孔,但不与手性受体或酶发生特异性相互作用。