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Beta-defensin derived cationic antimicrobial peptides with potent killing activity against gram negative and gram positive bacteria

机译:β-防御素来源于阳离子抗菌肽,具有富兰阴性和革兰氏阳性细菌的有效杀伤活性

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摘要

Abstract Background Avian β-defensins (AvBD) are cationic antimicrobial peptides (CAMP) with broad-spectrum antimicrobial activity, chemotactic property, and low host cytotoxicity. However, their bactericidal activity is greatly compromised under physiological salt concentrations which limits the use of these peptides as therapeutic agents. The length and the complex structure involving three conserved disulfide bridges are additional drawbacks associated with high production cost. In the present study, short linear CAMPs (11 to 25 a.a. residues) were developed based on the key functional components of AvBDs with additional modifications. Their biological functions were characterized. Results CAMP-t1 contained the CCR2 binding domain (N-terminal loop and adjacent α-helix) of AvBD-12 whereas CAMP-t2 comprised the key a.a. residues responsible for the concentrated positive surface charge and hydrophobicity of AvBD-6. Both CAMP-t1 and CAMP-t2 demonstrated strong antimicrobial activity against Pseudomonas aeruginosa, Staphylococcus aureus and Staphylococcus pseudintermedius. However, CAMP-t1 failed to show chemotactic activity and CAMP-t2, although superior in killing Staphylococcus spp., remained sensitive to salts. Using an integrated design approach, CAMP-t2 was further modified to yield CAMP-A and CAMP-B which possessed the following characteristics: α-helical structure with positively and negatively charged residues aligned on the opposite side of the helix, lack of protease cutting sites, C-terminal poly-Trp tail, N-terminal acetylation, and C-terminal amidation. Both CAMP-A and CAMP-B demonstrated strong antimicrobial activity against multidrug-resistant P. aeruginosa and methicillin-resistant S. pseudintermedius (MRSP) strains. These peptides were resistant to major proteases and fully active at physiological concentrations of NaCl and CaCl2. The peptides were minimally cytotoxic to avian and murine cells and their therapeutic index was moderate (≥ 4.5). Conclusions An integrated design approach can be used to develop short and potent antimicrobial peptides, such as CAMP-A and CAMP-B. The advantageous characteristics, including structural simplicity, resistance to salts and proteases, potent antimicrobial activity, rapid membrane attacking mode, and moderate therapeutic index, suggest that CAMP-A and CAMP-B are excellent candidates for development as therapeutic agents against multidrug-resistant P. aeruginosa and methicillin-resistant staphylococci.
机译:摘要背景禽β防御素(AVBD)是阳离子抗微生物肽(CAMP)具有广谱抗微生物活性,趋化特性,以及低宿主毒性。然而,它们的杀菌活性大大下生理盐浓度,这限制了使用这些肽作为治疗剂的损害。长度和涉及三个保守二硫键复杂结构是具有高生产成本相关联的附加缺点。在本研究中,短的线性CAMPS(11至25 A.A.残基)的基础上与另外的修饰AvBDs的关键功能组件被开发出来。它们的生物学功能进行了表征。结果CAMP-T1包含在CCR2结合结构域(N端环和相邻的α螺旋)AVBD-12而CAMP-T2所包括的键A.A.残基负责AVBD-6的浓缩正的表面电荷和疏水性。无论CAMP-T1和CAMP-T2表现出对铜绿假单胞菌,金黄色葡萄球菌和金黄色pseudintermedius强的抗菌活性。然而,CAMP-T1未能表现出趋化活性和CAMP-T2,虽然杀优越葡萄球菌,仍有盐敏感。使用集成的设计方法,CAMP-T2为进一步修饰以产生CAMP-A和cAMP-B,其具有以下特征:与所述螺旋的相对侧对齐正电和带负电荷的残基α螺旋结构,缺乏蛋白酶切割的位点,C-末端聚色氨酸尾,N末端乙酰化和C-末端酰胺化。将cAMP-A和cAMP-B表现出对耐多药铜绿假单胞菌和甲氧西林抗性pseudintermedius(MRSP)菌株强抗微生物活性。这些肽是主要的蛋白酶抗性并在NaCl和CaCl 2的生理浓度完全活性。所述肽是最低限度的细胞毒性禽流感和鼠细胞和它们的治疗指数为中度(≥4.5)。结论一种集成设计方法可用于开发和短效抗微生物肽,例如CAMP-A和cAMP-B。的有利特征,包括结构简单,其盐和蛋白酶的抗性,有效的抗菌活性,快速膜攻击模式,以及中度的治疗指数,表明CAMP-A和cAMP-B是用于发展对耐多药-P的治疗剂的最佳候选铜绿假单胞菌和甲氧西林耐药性葡萄球菌。

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