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通过掺入精氨酸类似物改变短阳离子抗菌肽的活性和物理化学性质。

Altered activity and physicochemical properties of short cationic antimicrobial peptides by incorporation of arginine analogues.

作者信息

Svenson Johan, Karstad Rasmus, Flaten Gøril E, Brandsdal Bjørn-Olav, Brandl Martin, Svendsen John S

机构信息

The Norwegian Structural Biology Centre, University of Tromsø, N-9037 Tromsø, Norway.

出版信息

Mol Pharm. 2009 May-Jun;6(3):996-1005. doi: 10.1021/mp900057k.

Abstract

The incorporation of nongenetically encoded amino acids is a well established strategy to alter the behavior of several types of promising cationic antimicrobial peptides. Generally, these elements have been improved mimics of the hydrophobic amino acids yielding peptides with increased stability and potency. In this initial study, the effect of systematic replacement of Arg in a well-defined moderately antimicrobial tripeptide library is described. It is shown that the arginine analogues need to display a strong basicity to produce active peptides. It is further revealed that the hydrophobic units needed for activity in these peptides can be effectively incorporated in the direct vicinity of the cationic charge to produce compounds with improved antibacterial properties. A well-defined facial amphiphilic structure, which remains intact upon introduction of hydrophobic elements in the cationic side chains, is seen for the majority of the tested peptides. Microcalorimetric studies revealed a peptide binding to large anionic unilamellar vesicles (LUVs) mimicking the Gram-positive bacterial membrane as well as a potentially competitive binding to human serum albumin in the low- to mid-micromolar range. No considerable alterations in binding to either albumin or the LUVs were seen for the analogue containing peptides. A neutral LUV mimicking the eukaryotic cell membrane showed no significant binding to any of the peptides. The oral absorption of this class of short lactoferricin based peptides was investigated for the first time and revealed that incorporation of weaker bases than Arg produced peptides with much improved permeability in a recently developed permeation model, the phospholipid vesicle based barrier assay. Collectively, the results presented here show that there is ample room to toggle the activity and physical properties of short cationic antimicrobial peptides by incorporation of arginine analogues.

摘要

掺入非基因编码氨基酸是一种成熟的策略,用于改变几种有前景的阳离子抗菌肽的行为。一般来说,这些元素是疏水氨基酸的改进模拟物,可产生稳定性和效力更高的肽。在这项初步研究中,描述了在一个定义明确的中度抗菌三肽文库中系统替换精氨酸的效果。结果表明,精氨酸类似物需要表现出强碱性才能产生活性肽。进一步揭示,这些肽中活性所需的疏水单元可以有效地掺入阳离子电荷的紧邻区域,以产生具有改善抗菌性能的化合物。对于大多数测试肽,在阳离子侧链中引入疏水元素后,一种定义明确的面两亲结构保持完整。微量量热研究表明,一种肽与模拟革兰氏阳性细菌膜的大阴离子单层囊泡(LUV)结合,以及在低至中微摩尔范围内与人血清白蛋白存在潜在的竞争性结合。含类似物的肽与白蛋白或LUV的结合没有明显变化。模拟真核细胞膜的中性LUV与任何一种肽都没有明显结合。首次研究了这类基于乳铁蛋白的短肽的口服吸收情况,结果表明,在最近开发的渗透模型——基于磷脂囊泡的屏障试验中,掺入比精氨酸碱性弱的碱基可产生渗透性大大提高的肽。总体而言,此处呈现的结果表明,通过掺入精氨酸类似物,有足够的空间来调节短阳离子抗菌肽的活性和物理性质。

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