首页> 外文期刊>Memorias do Instituto Oswaldo Cruz >Characterising four Sarconesiopsis magellanica (Diptera: Calliphoridae) larval fat body-derived antimicrobial peptides
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Characterising four Sarconesiopsis magellanica (Diptera: Calliphoridae) larval fat body-derived antimicrobial peptides

机译:表征四个嗜酸盐麦哲伦(Diptera:Calliphoridae)幼虫脂肪体衍生的抗微生物肽

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BACKGROUND The inappropriate use of antibiotics has led to the accelerated growth of resistance to antibiotics. The search for new therapeutic strategies (i.e., antimicrobial peptides-AMPs) has thus become a pressing need. OBJECTIVE Characterising and evaluating Sarconesiopsis magellanica larval fat body-derived AMPs. METHODS Fat body extracts were analysed by reversed-phase high-performance liquid chromatography (RP-HPLC); mass spectrometry was used for characterising the primary structure of the AMPs so found. ProtParam (Expasy) was used for analysing the AMPs’ physico-chemical properties. Synthetic AMPs’ antibacterial activity was evaluated. FINDINGS Four new AMPs were obtained and called sarconesin III, IV, V and VI. Sarconesin III had an α-helix structure and sarconesins IV, V and VI had linear formations. Oligomer prediction highlighted peptide-peptide interactions, suggesting that sarconesins III, V and VI could form self-aggregations when in contact with the microbial membrane. AMPs synthesised from their native molecules’ sequences had potent activity against Gram-positive bacteria and, to a lesser extent, against Gram-negative and drug-resistant bacteria. Sarconesin VI was the most efficient AMP. None of the four synthetic AMPs had a cytotoxic effect. MAIN CONCLUSIONS S. magellanica larval fat body-derived antimicrobial peptides are an important source of AMPs and could be used in different antimicrobial therapies and overcoming bacterial resistance.
机译:背景技术抗生素的不当使用导致抗生素的抗性加速增长。因此,寻找新的治疗策略(即抗微生物肽-AMPs)因此成为压迫需求。目的表征和评估Sarconesiopsis Magellanica幼虫脂肪体衍生的AMPS。方法通过反相高效液相色谱(RP-HPLC)分析脂肪体提取物;质谱法用于表征所以发现放大器的主要结构。 ProtParam(Expasy)用于分析安培的物理化学性质。评估合成安培的抗菌活性。发现并称为Sarconesin III,IV,V和VI的四种新的AMP。 Sarconesin III具有α-螺旋结构和Sarconesins IV,V和VI具有线性地层。低聚物预测突出显示肽 - 肽相互作用,表明在与微生物膜接触时,患有Sarconesin III,V和VI可以形成自聚集。从其本地分子序列合成的AMPS对革兰氏阳性细菌具有有效的活性,并且在较小程度上对抗革兰氏阴性和耐药细菌。 Sarconesin VI是最有效的放大器。四种合成安培中的任何一个都没有细胞毒性作用。主要结论S. Magellanica幼虫脂肪体衍生的抗微生物肽是AMP的重要来源,可用于不同的抗微生物疗法并克服细菌性。

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