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The effect of the length and flexibility of the side chain of basic amino acids on the binding of antimicrobial peptides to zwitterionic and anionic membrane model systems

机译:碱性氨基酸侧链的长度和柔韧性对抗菌肽与两性离子和阴离子膜模型系统结合的影响

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The intent of this investigation was to determine the effect of varying the side chain length of the basic amino acids residues on the binding of a series of antimicrobial peptides (AMPs) to zwitterionic and anionic LUVs, SUVs and micelles. These AMPs are based on the incorporation of three dipeptide units consisting of the unnatural amino acids Tic-Oic in the sequence, Ac-GF-Tic-Oic-GX-Tic-Oic-GF-Tic-Oic-GX-Tic-XXXX-CONH 2, where X (Spacer #2) may be one of the following amino acids, Lys, Orn, Dab, Dpr or Arg. A secondary focus of this study was to attempt to correlate the possible mechanisms of membrane binding of these AMPs to their bacterial strain potency and selectivity. These AMPs produced different CD spectra in the presence of zwitterionic DPC and anionic SDS micelles. This observation indicates that these AMPs adopt different conformations on binding to the surface of zwitterionic and anionic membrane model systems. The CD spectra of these AMPs in the presence of zwitterionic POPC and anionic 4:1 POPC/POPG LUVs and SUVs also were different, indicating that they adopt different conformations on interaction with the zwitterionic and anionic liposomes. This observation was supported by ITC and calcein leakage data that indicated that these AMPs interact via very different mechanisms with anionic and zwitterionic LUVs. The enthalpy for the binding of these AMPs to POPC directly correlates to the length of Spacer #2. The enthalpy of binding of these AMPs to 4:1 POPC/POPG, however do not correlate with the length of Spacer #2. Clear evidence exists that the AMP containing the Dpr residues (the shortest length spacer) interacts very differently with both POPC and 4:1 POPC/POPG LUVs compared to the other four compounds. Data indicates that both the hydrophobicity and the charge distribution of Spacer #2, contribute to defining antibacterial activity. These observations have major implications on the development of these analogs as potential therapeutic agents.
机译:该研究的目的是确定改变碱性氨基酸残基的侧链长度对一系列抗菌肽(AMP)与两性离子和阴离子LUV,SUV和胶束结合的影响。这些AMP基于三个三肽单元的整合,该三肽单元由序列中的非天然氨基酸Tic-Oic,Ac-GF-Tic-Oic-GX-Tic-Oic-GF-Tic-Oic-GX-Tic-XXXX-组成CONH 2,其中X(Spacer#2)可以是以下氨基酸之一,Lys,Orn,Dab,Dpr或Arg。这项研究的第二个重点是试图将这些AMP的膜结合可能机制与其细菌菌株的效力和选择性相关联。在两性离子DPC和阴离子SDS胶束的存在下,这些AMP产生了不同的CD光谱。该观察表明,这些AMP在与两性离子和阴离子膜模型系统的表面结合时采用不同的构象。在两性离子POPC和阴离子4:1 POPC / POPG LUV和SUV存在下,这些AMP的CD光谱也不同,这表明它们在与两性离子和阴离子脂质体相互作用时采用不同的构象。 ITC和钙黄绿素泄漏数据支持了这一观察结果,表明这些AMP通过非常不同的机制与阴离子和两性离子LUV相互作用。这些AMP与POPC结合的焓与间隔物#2的长度直接相关。这些AMP与4:1 POPC / POPG结合的焓与间隔物2的长度无关。有明确的证据表明,与其他四种化合物相比,含有Dpr残基(最短间隔子)的AMP与POPC和4:1 POPC / POPG LUV的相互作用非常不同。数据表明,间隔基#2的疏水性和电荷分布均有助于确定抗菌活性。这些观察对这些类似物作为潜在治疗剂的发展具有重大意义。

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