首页> 外文期刊>BioMed research international >Antibacterial Activity of Synthetic Peptides Derived from Lactoferricin against Escherichia coli ATCC 25922 and Enterococcus faecalis ATCC 29212
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Antibacterial Activity of Synthetic Peptides Derived from Lactoferricin against Escherichia coli ATCC 25922 and Enterococcus faecalis ATCC 29212

机译:含有乳叶苷蛋白含有对大肠杆菌ATCC 25922的合成肽的抗菌活性和肠球菌FAPALIS ATCC 29212

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摘要

Peptides derived from human and bovine lactoferricin were designed, synthesized, purified, and characterized using RP-HPLC and MALDI-TOF-MS. Specific changes in the sequences were designed as (i) the incorporation of unnatural amino acids in the sequence, the (ii) reduction or (iii) elongation of the peptide chain length, and (iv) synthesis of molecules with different number of branches containing the same sequence. For each peptide, the antibacterial activity against Escherichia coli ATCC 25922 and Enterococcus faecalis ATCC 29212 was evaluated. Our results showed that Peptides 1.2 (RWQWRWQWR) and 1.4 ((RRWQWR)_4K_2Ahx_2C_2) exhibit bigger or similar activity against E. coli (MIC 4-33 μM) and E. faecalis (MIC 10-33 μM) when they were compared with lactoferricin protein (LF) and some of its derivate peptides as II.l (FKCRRWQWRMKKLGA) and IV.l (FKCRRWQWRMKKLGAPSITCVRRAE). It should be pointed out that Peptides 1.2 and 1.4, containing the RWQWR motif, are short and easy to synthesize; our results demonstrate that it is possible to design and obtain synthetic peptides that exhibit enhanced antibacterial activity using a methodology that is fast and low-cost and that allows obtaining products with a high degree of purity and high yield.
机译:使用RP-HPLC和MALDI-TOF-MS设计,合成,纯化和表征衍生自人和牛乳叶植物的肽。设计了序列的具体变化为(i)序列中的不自然氨基酸,(ii)的氨基酸或(iii)伸长肽链长度,(iv)与含有不同数量的分支的分子合成相同的序列。对于每种肽,评估针对大肠杆菌ATCC 25922和肠球菌粪便ATCC 29212的抗菌活性。我们的结果表明,当与乳叶素相比,肽1.2(RWQWRWQWR)和1.4((RRWQWRWQWR)和1.4(((RRWQWR)_4K_2AHX_2AHX_2C_2C_2)对大肠杆菌(MIC4-33μm)和大肠杆菌(MIC10-33μm)表现出更大或相似的活性蛋白质(LF)和其一些衍生肽作为II.L(FKCRRWQWRMKKLGA)和IV.L(FKCRRWQWRMKKLGAPSITCVRRAE)。应该指出的是,含有RWQWR基序的肽1.2和1.4是短且易于合成的;我们的结果表明,可以使用快速和低成本的方法设计和获得具有增强的抗菌活性的合成肽,并且允许获得具有高纯度和高产率的产品。

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