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Investigation of cationicity and structure of pseudin-2 analogues for enhanced bacterial selectivity and anti-inflammatory activity

机译:pseudin-2类似物的阳离子性和结构对增强细菌选择性和抗炎活性的研究

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摘要

Pseudin-2 (Ps), isolated from the frog Pseudis paradoxa, exhibits potent antibacterial activity and cytotoxicity. To develop antimicrobial peptides with anti-inflammatory activity and low cytotoxicity, we designed Ps analogues with Lys substitutions, resulting in elevated amphipathic α-helical structure and cationicity. We further substituted Gly11 with Pro (Ps-P analogues) to increase bacterial cell selectivity. Ps analogues retained antimicrobial activity and exhibited reduced cytotoxicity, whereas Ps-P analogues exhibited lower cytotoxicity and antimicrobial activity. Tertiary structures revealed that Ps has a linear α-helix from Leu2 to Glu24, whereas Ps-P has a bend at Pro11 between two short α-helixes. Using various biophysical experiments, we found that Ps analogues produced much higher membrane depolarization than Ps-P analogues, whereas Ps-P analogues may penetrate bacterial cell membranes. Ps and its analogue Ps-K18 exhibited potent anti-inflammatory activity in LPS-stimulated RAW264.7 and mouse dendritic cells via a mechanism involving the Toll-like receptor 4 (TLR4) pathway. These activities may arise from their direct inhibition of the formation of TLR4-MD-2_LPS complex, implying that amphipathic α-helical structure with an optimum balance between enhanced cationicity and hydrophobicity may be essential for their anti-inflammatory activity. The bent structure provided by Pro substitution plays an important role in enhancing bacterial cell selectivity and cell penetration.
机译:从青蛙假单胞菌中分离出来的Pseudin-2(Ps)具有强大的抗菌活性和细胞毒性。为了开发具有抗炎活性和低细胞毒性的抗菌肽,我们设计了具有Lys取代基的Ps类似物,从而导致两亲性α-螺旋结构和阳离子性升高。我们进一步用Pro(Ps-P类似物)取代了Gly 11 ,以提高细菌细胞的选择性。 Ps类似物保留抗微生物活性并表现出降低的细胞毒性,而Ps-P类似物表现出较低的细胞毒性和抗菌活性。三级结构表明,Ps具有从Leu 2 到Glu 24 的线性α-螺旋,而Ps-P在Pro 11 之间弯曲两个短的α螺旋。使用各种生物物理实验,我们发现Ps类似物比Ps-P类似物产生更高的膜去极化作用,而Ps-P类似物可能会穿透细菌细胞膜。 Ps及其类似物Ps-K18通过涉及Toll样受体4(TLR4)途径的机制,在LPS刺激的RAW264.7和小鼠树突状细胞中表现出有效的抗炎活性。这些活性可能是由于它们直接抑制TLR4-MD-2_LPS复合物的形成而产生的,这表明两性性α-螺旋结构在增强的阳离子性和疏水性之间达到最佳平衡可能是其消炎活性必不可少的。 Pro取代提供的弯曲结构在增强细菌细胞选择性和细胞穿透力方面起着重要作用。

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