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Isothermal Titration Calorimetry Studies of the Binding of a Rationally Designed Analogue of the Antimicrobial Peptide Gramicidin S to Phospholipid Bilayer Membranes

机译:等温滴定量热法研究抗菌肽Gramicidin S与磷脂双层膜的合理设计类似物的结合。

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摘要

The binding of the positively charged antimicrobial peptide cyclo[VKLdKVdYPLKVKLdYP] (GS14dK4) to various lipid bilayer model membranes was investigated using isothermal titration calorimetry. GS14dK4 is a diastereomeric lysine ring-size analogue of the naturally occurring antimicrobial peptide gramicidin S which exhibits enhanced antimicrobial and markedly reduced hemolytic activities compared with GS itself. Large unilamellar vesicles composed of various zwitterionic (1-palmitoyl-2-oleoyl-sn-glycero-3-phosphorylcholine [POPC]) and anionic phospholipids {1-palmitoyl-2-oleoyl-sn-glycero-3-[phospho-rac-(glycerol)] [POPG] and 1-palmitoyl-2-oleoyl-sn-glycero-3-[phosphoserine] [POPS]}, with or without cholesterol, were used as model membrane systems. Dynamic light scattering results indicate the absence of any peptide-induced major alteration in vesicle size or vesicle fusion under our experimental conditions. The binding of GS14dK4 is significantly influenced by the surface charge density of the phospholipid bilayer and by the presence of cholesterol. Specifically, a significant reduction in the degree of binding occurs when three-fourths of the anionic lipid molecules are replaced with zwitterionic POPC molecules. No measurable binding occurs to cholesterol-containing zwitterionic vesicles, and a dramatic drop in binding is observed in the cholesterol-containing anionic POPG and POPS membranes, indicating that the presence of cholesterol markedly reduces the affinity of this peptide for phospholipid bilayers. The binding isotherms can be described quantitatively by a one-site binding model. The measured endothermic binding enthalpy (ΔH) varies dramatically (+6.3 to +26.5 kcal/mol) and appears to be inversely related to the order of the phospholipid bilayer system. However, the negative free energy (ΔG) of binding remains relatively constant (−8.5 to −11.5 kcal/mol) for all lipid membranes examined. The relatively small variation of negative free energy of peptide binding together with a pronounced variation of positive enthalpy produces an equally strong variation of TΔS (+16.2 to +35.0 kcal/mol), indicating that GS14dK4 binding to phospholipids bilayers is primarily entropy driven.
机译:使用等温滴定量热法研究了带正电荷的抗菌肽环[VKLdKVdYPLKVKLdYP](GS14dK4)与各种脂质双层模型膜的结合。 GS14dK4是天然存在的抗菌肽短杆菌肽S的非对映体赖氨酸环大小的类似物,与GS本身相比,其抗菌性增强,溶血活性明显降低。大型单层囊泡,由各种两性离子(1-棕榈酰基-2-油酰基-sn-甘油-3-磷酸胆碱[POPC])和阴离子磷脂{1-棕榈酰基-2-油酰基-sn-甘油-3- [磷酸-rac- (甘油)] [POPG]和1-棕榈酰-2-油酰基-sn-甘油-3- [磷酸丝氨酸] [POPS]},有或没有胆固醇,都用作模型膜系统。动态光散射结果表明在我们的实验条件下,没有任何肽诱导的囊泡大小或囊泡融合的主要改变。 GS14dK4的结合受到磷脂双层的表面电荷密度和胆固醇的存在的显着影响。具体而言,当四分之三的阴离子脂质分子被两性离子POPC分子取代时,结合度会显着降低。与含胆固醇的两性离子囊泡未发生可测量的结合,在含胆固醇的阴离子POPG和POPS膜中观察到结合的急剧下降,表明胆固醇的存在显着降低了该肽对磷脂双层的亲和力。结合等温线可以通过单点结合模型定量描述。测得的吸热结合焓(ΔH)显着变化(+6.3至+26.5 kcal / mol),并且似乎与磷脂双层系统的顺序成反比。然而,对于所有检查的脂质膜,结合的负自由能(ΔG)保持相对恒定(-8.5至-11.5 kcal / mol)。肽结合的负自由能的相对较小变化与正焓的显着变化一起产生了TΔS的同等强烈变化(+16.2至+35.0 kcal / mol),表明GS14dK4与磷脂双层的结合主要是由熵驱动的。

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