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抗菌酰基赖氨酸低聚物的构效关系

Structure-activity relationships of antibacterial acyl-lysine oligomers.

作者信息

Radzishevsky Inna S, Kovachi Tchelet, Porat Yaara, Ziserman Lior, Zaknoon Fadia, Danino Dganit, Mor Amram

机构信息

Department of Biotechnology & Food Engineering, Technion-Israel Institute of Technology, Haifa 32000, Israel.

出版信息

Chem Biol. 2008 Apr;15(4):354-62. doi: 10.1016/j.chembiol.2008.03.006.

Abstract

We describe structure-activity relationships that emerged from biophysical data obtained with a library of antimicrobial peptide mimetics composed of 103 oligoacyllysines (OAKs) designed to pin down the importance of hydrophobicity (H) and charge (Q). Based on results obtained with OAKs displaying minimal inhibitory concentration < or = 3 microM, the data indicate that potent inhibitory activity of the gram-negative Escherichia coli and the gram-positive Staphylococcus aureus required a relatively narrow yet distinct window of HQ values where the acyl length played multiple and critical roles, both in molecular organization and in selective activity. Thus, incorporation of long-but not short-acyl chains within a peptide backbone is shown to lead to rigid supramolecular organization responsible for poor antibacterial activity and enhanced hemolytic activity. However, sequence manipulations, including introduction of a tandem lysine motif into the oligomer backbone, enabled disassembly of aggregated OAKs and subsequently revealed tiny, nonhemolytic, yet potent antibacterial derivatives.

摘要

我们描述了从生物物理数据中得出的构效关系,这些数据来自一个由103种寡聚酰赖氨酸(OAKs)组成的抗菌肽模拟物文库,旨在确定疏水性(H)和电荷(Q)的重要性。基于对最低抑菌浓度≤3 microM的OAKs所获得的结果,数据表明,对革兰氏阴性大肠杆菌和革兰氏阳性金黄色葡萄球菌的有效抑制活性需要一个相对狭窄但独特的HQ值窗口,其中酰基长度在分子组织和选择性活性中都发挥着多重关键作用。因此,在肽主链中引入长而非短的酰基链会导致刚性超分子组织,从而导致抗菌活性不佳和溶血活性增强。然而,序列操作,包括在寡聚物主链中引入串联赖氨酸基序,能够使聚集的OAKs解体,随后揭示出微小的、无溶血作用但有效的抗菌衍生物。

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