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Antibacterial and anticancer activity of a series of novel peptides incorporating cyclic tetra-substituted C-alpha amino acids

机译:一系列结合环状四取代C-α氨基酸的新型肽的抗菌和抗癌活性

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摘要

Eleven antimicrobial peptides (AMP) based on the incorporation of cyclic tetra substituted C-alpha amino acids, as well as other unnatural amino acids were designed, synthesized and screened for in vitro activity against 18 strains of bacteria as well as 12 cancer cell lines. The AMPs discussed herein are derived from the following peptide sequence: Ac-GF(X) G(X) B(X) G(X) F(X) G(X) GB(X) BBBB-amide, X = any one of the following residues, A5c, A6c, Tic or Oic and B = any one of the following residues, Arg, Lys, Orn, Dpr or Dab. A diversity of in vitro inhibitory activity was observed for these AMPs. Several analogs exhibited single digit lM activity against drug resistant bacteria including; multiple drug resistant Mycobacterium tuberculosis, extremely drug resistant Mycobacterium tuberculosis and MRSA. The physicochemical properties of the basic amino acid residues incorporated into these AMPs seem to play a major role in defining antibacterial activity. Overall hydrophobicity seems to play a limited role in defining antibacterial activity. The ESKAPE pathogens were used to compare the activity of these AMPs to another family of synthetic AMPs incorporating the unnatural amino acids Tic and Oic. In most cases similarly substituted members of both families exhibited similar inhibitory activity against the ESKAPE pathogens. In specific cases differences in activity as high as 15 fold were observed between analogs. In addition four of these AMPs exhibited promising IC50 (<7.5 mu M) values against 12 different and diverse cancer cell lines. Five other AMPs exhibited promising IC50 (<7.5 mu M) values against selected cancer cell lines. (C) 2016 Elsevier Ltd. All rights reserved.
机译:设计,合成了基于环状四取代的C-α氨基酸以及其他非天然氨基酸的11种抗菌肽(AMP),并针对18种细菌菌株和12种癌细胞系进行了体外活性筛选。本文讨论的AMP衍生自以下肽序列:Ac-GF(X)G(X)B(X)G(X)F(X)G(X)GB(X)BBBB-酰胺,X =任何一个A5c,A6c,Tic或Oic残基中的一个,且B = Arg,Lys,Orn,Dpr或Dab残基中的任何一个。对于这些AMP,观察到了多种体外抑制活性。几种类似物对耐药菌表现出一位数的1M活性,包括:多重耐药结核分枝杆菌,极耐药结核分枝杆菌和MRSA。掺入这些AMP中的碱性氨基酸残基的物理化学性质似乎在定义抗菌活性中起主要作用。总的疏水性似乎在定义抗菌活性方面起着有限的作用。使用ESKAPE病原体将这些AMP的活性与另一个结合了非天然氨基酸Tic和Oic的合成AMP家族进行比较。在大多数情况下,两个家族的类似取代成员对ESKAPE病原体表现出类似的抑制活性。在特定情况下,类似物之间的活性差异高达15倍。此外,这些AMP中有四个针对12种不同的癌细胞系表现出有希望的IC50(<7.5μM)值。其他五种AMP对选定的癌细胞系表现出有希望的IC50(<7.5μM)值。 (C)2016 Elsevier Ltd.保留所有权利。

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