Design and synthesis of antimicrobial peptides.

R. B. Merrifield, E. Merrifield, P. Juvvadi, D. Andreu, H. G. Boman
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引用次数: 45

Abstract

The cecropins are a group of potent antimicrobial peptides, initially discovered in insects but later found in other animals including mammals. Synthetic peptide chemistry has played an important role in establishing their primary sequences, as well as the steps in the processing of the biosynthetic preprocecropins. Solid-phase peptide synthesis has been the method of choice. Synthetic chimeric peptides have led to more active products and a better understanding of their mode of action. The structural requirements for high activity include a basic amphipathic N-terminus, a short central flexible sequence and a hydrophobic helical C-terminus. Cecropin-melittin hybrids as small as 15 residues are highly active. In planar lipid bilayers the cecropins form pores which pass ions and carry a current under a voltage gradient. Synthetic D-enantiomers of several antibacterial peptides carry the same current as the natural all-L-peptides and are equally active against several test bacteria. Therefore, the activity is not dependent on chiral interactions between the peptides and the lipid bilayers or the bacterial membranes. Recent examination of retro and retroenantio peptides has further defined the limits of the structural requirements of these peptides. Some of the hybrid peptides are active against Plasmodium falciparum and Mycobacterium smegmatis.
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抗菌肽的设计与合成。
抗菌肽是一组有效的抗菌肽,最初在昆虫中发现,但后来在包括哺乳动物在内的其他动物中发现。合成肽化学在确定它们的一级序列以及生物合成前促肽肽的加工步骤方面发挥了重要作用。固相多肽合成一直是首选的方法。合成的嵌合肽产生了更多的活性产物,并对其作用方式有了更好的了解。高活性的结构要求包括一个基本的两性n端,一个短的中心柔性序列和一个疏水的螺旋c端。Cecropin-melittin杂交体小至15个残基就具有很高的活性。在平面脂质双分子层中,丝质蛋白形成孔洞,孔洞通过离子并在电压梯度下携带电流。几种抗菌肽的合成d -对映体与天然全l-肽具有相同的电流,并且对几种测试细菌具有相同的活性。因此,活性不依赖于肽与脂质双分子层或细菌膜之间的手性相互作用。最近对逆转录肽和逆转录肽的研究进一步确定了这些肽的结构要求的限制。部分杂化肽对恶性疟原虫和耻垢分枝杆菌有活性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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Microdensitometry. Peptide metabolism. Local and collective motions in protein dynamics. The 'see-saw' theory of parturition. Salmonellosis: in retrospect and prospect.
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