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疏水作用对天蚕素A-蜂毒素杂合体抗菌及形成通道特性的影响

Hydrophobic effects on antibacterial and channel-forming properties of cecropin A-melittin hybrids.

作者信息

Juvvadi P, Vunnam S, Merrifield E L, Boman H G, Merrifield R B

机构信息

Rockefeller University, New York 10021, USA.

出版信息

J Pept Sci. 1996 Jul-Aug;2(4):223-32. doi: 10.1002/psc.63.

Abstract

The design of cecropin-melittin hybrid analogues is of interest due to the similarities in the structure of the antimicrobial peptides cecropin and melittin but differences in their lytic properties. We suspected that a hydrophobic residue in position 2 of milittin (Ile8 in the hybrid) plays an important role in the activity of the 15-residue hybrid, KWKLFKKIGAVLKVL-NH2, [CA(1-7)M(2-9)NH2] and have now examined its role in the analogue toward five test bacteria. Deletion of Ile8 reduced activity, and it was not restored by lengthening to 15 residues by addition of another threonine at the C-terminus. Replacement of Ile8 by a hydrophobic leucine maintained good activity and Ala8 was equally active for four organisms, although less active against Staphylococcus aureus. Replacement by the hydrophilic Ser8 strongly reduced potency against all five organisms. Deletion of Leu15 decreased activity, but addition of Thr16 maintained good activity. The presence of hydrophobic residues appears to have a significant effect on the process of antibacterial activity. These peptide analogues showed voltage-dependent conductance changes and are capable of forming ion-pores in planar lipid bilayers. The antibacterial action of the peptides is thought to be first an ionic interaction with the anionic phosphate groups of the membrane followed by interaction with the hydrocarbon core of the membrane and subsequent reorientation into amphipathic alpha-helical peptides that form pores (ion-channels), which span the membrane. The analogue also showed an increase in alpha-helicity with an increase in hexafluoro 2-propanol concentration.

摘要

由于抗菌肽天蚕素和蜂毒素在结构上存在相似性,但在裂解特性上存在差异,因此天蚕素 - 蜂毒素杂合类似物的设计备受关注。我们怀疑蜂毒素第2位的疏水残基(杂合体中的Ile8)在15个残基的杂合体KWKLFKKIGAVLKVL - NH2,[CA(1 - 7)M(2 - 9)NH2]的活性中起重要作用,现在我们研究了它在该类似物对五种测试细菌中的作用。删除Ile8会降低活性,并且在C末端添加另一个苏氨酸将其延长至15个残基并不能恢复活性。用疏水的亮氨酸取代Ile8保持了良好的活性,Ala8对四种生物体同样具有活性,尽管对金黄色葡萄球菌的活性较低。用亲水性的Ser8取代会强烈降低对所有五种生物体的效力。删除Leu15会降低活性,但添加Thr16保持了良好的活性。疏水残基的存在似乎对抗菌活性过程有显著影响。这些肽类似物表现出电压依赖性电导变化,并且能够在平面脂质双层中形成离子孔。肽的抗菌作用被认为首先是与膜的阴离子磷酸基团进行离子相互作用,随后与膜的烃核心相互作用,随后重新定向为形成跨膜孔(离子通道)的两亲性α - 螺旋肽。该类似物还随着六氟2 - 丙醇浓度的增加而α - 螺旋度增加。

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