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首页> 外文期刊>Peptides: An International Journal >Synthesis, characterization, antimicrobial activity and LPS-interaction properties of SB041, a novel dendrimeric peptide with antimicrobial properties.
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Synthesis, characterization, antimicrobial activity and LPS-interaction properties of SB041, a novel dendrimeric peptide with antimicrobial properties.

机译:SB041的合成,表征,抗菌活性和LPS相互作用特性,一种具有抗菌特性的新型树枝状肽。

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Multimeric peptides offer several advantages with respect to their monomeric counterparts, as increased activity and greater stability to peptidases and proteases. SB041 is a novel antimicrobial peptide with dendrimeric structure; it is a tetramer of pyrEKKIRVRLSA linked by a lysine core, with an amino valeric acid chain. Here, we report on its synthesis, NMR characterization, antimicrobial activity, and LPS-interaction properties. The peptide was especially active against Gram-negative strains, with a potency comparable (on molar basis) to that of lipopeptides colistin and polymixin B, but it also displayed some activity against selected Gram-positive strains. Following these indications, we investigated the efficacy of SB041 in binding Escherichia coli and Pseudomonas aeruginosa LPS in vitro and counteracting its biological effects in RAW-Blue cells, derived from RAW 264.7 macrophages. SB041 strongly bound purified LPS, especially that of E. coli, as proved by fluorescent displacement assay, and readily penetrated into LPS monolayers. However, the killing activity of SB041 against E. coli was not inhibited by increasing concentrations of LPS added to the medium. Checking the SB041 effect on LPS-induced activation of pattern recognition receptors (PRRs) in Raw-Blue cells revealed that while the peptide gave a statistically significant decrease in PRRs stimulation when RAW-Blue cells were challenged with P. aeruginosa LPS, the same was not seen when E. coli LPS was used to activate innate immune defense-like responses. Thus, as previously seen for other antimicrobial peptides, also for SB041 binding to LPS did not translate necessarily into LPS-neutralizing activity, suggesting that SB041-LPS interactions must be of complex nature.
机译:相对于其单体对应物,多聚体肽具有若干优点,因为它们具有增强的活性以及对肽酶和蛋白酶的更高稳定性。 SB041是具有树状结构的新型抗菌肽;它是pyrEKKIRVRLSA的四聚体,通过赖氨酸核心与氨基戊酸链连接。在这里,我们报告其合成,NMR表征,抗菌活性和LPS相互作用特性。该肽对革兰氏阴性菌株特别有活性,效力(以摩尔计)可与脂肽粘菌素和多粘菌素B相媲美,但对某些革兰氏阳性菌株也有一定活性。遵循这些指示,我们研究了SB041在体外结合大肠杆菌和铜绿假单胞菌LPS的功效,并抵消了其在RAW-Blue细胞中的生物学效应,所述RAW-Blue细胞来源于RAW 264.7巨噬细胞。 SB041与纯化的LPS(特别是大肠杆菌的LPS)牢固结合,通过荧光置换分析证明,并易于渗透到LPS单层中。但是,增加培养基中LPS的浓度不会抑制SB041对大肠杆菌的杀伤活性。检查SB041对Raw-Blue细胞中LPS诱导的模式识别受体(PRRs)活化的影响表明,当用绿脓杆菌LPS攻击RAW-Blue细胞时,该肽在PRRs刺激上具有统计学上的显着降低,但相同当使用大肠杆菌LPS激活先天性免疫防御样反应时未见到。因此,如先前对于其他抗菌肽所见,对于SB041与LPS的结合也不一定转化为LPS中和活性,这表明SB041-LPS相互作用必须具有复杂的性质。

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