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Optimized Expression and Characterization of Antimicrobial Peptides, LPcin Analogs

机译:抗菌肽LPcin类似物的优化表达和表征

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摘要

Lactophoricin (LPcin or LPcin-I), a cationic amphipathic antimicrobial peptide consisting of 23 amino acids, is a part of proteose peptone (113-135) isolated from bovine milk. The 23 amino acids of LPcin are relatively long for industrial uses as antimicrobial peptides. Therefore, a series of N-or C-terminal truncated variant mutated analogs and truncated mutated analogs were designed using peptide engineering techniques to investigate the structure-activity relationships. Then, three analogs of LPcin-C8 [(LPcin-YK1), LPcin-T2WT6W (LPcin-YK2), and LPcin-T2WT6W-C8 (LPcin-YK3)] were optimized to express with high yield and characterized for their structural studies. Successful expression of these three LPcin analogs in Escherichia coli system was accomplished through the formation of a fusion protein with higher yield. The peptides were purified using several biophysical techniques and finally isolated using reversed-phase preparative HPLC. The purity, molecular mass, and the secondary structure of the purified and isolated LPcin analogs were characterized by polyacrylamide gel electrophoresis, mass spectrometry, and circular dichroism spectrometry. The secondary structure of LPcin and its three analog peptides clearly showed alpha-helical characteristics in membrane environments and random-coil conformation in water. Consequently, our results so far have shown that the three LPcin analogs could become potent antimicrobial peptides like LPcin as an alternative of new antibiotics in the near future.
机译:乳酸菌素(LPcin或LPcin-I)是一种由23个氨基酸组成的阳离子两亲性抗菌肽,是从牛乳中分离出的蛋白p(113-135)的一部分。 LPcin的23个氨基酸在工业上用作抗菌肽的时间相对较长。因此,使用肽工程技术设计了一系列的N-或C-末端截短的变异突变类似物和截短的突变类似物以研究结构-活性关系。然后,对LPcin-C8的三个类似物[(LPcin-YK1),LPcin-T2WT6W(LPcin-YK2)和LPcin-T2WT6W-C8(LPcin-YK3)]进行了优化,以高收率表达并对其结构进行了表征。这三种LPcin类似物在大肠杆菌系统中的成功表达是通过形成融合蛋白而获得的,产率更高。使用几种生物物理技术纯化肽,最后使用反相制备型HPLC分离。纯化和分离的LPcin类似物的纯度,分子量和二级结构通过聚丙烯酰胺凝胶电泳,质谱和圆二色谱进行表征。 LPcin及其三个类似物肽的二级结构在膜环境中清楚地显示出α螺旋特征,在水中具有随机螺旋构象。因此,到目前为止,我们的结果表明,三种LPcin类似物在不久的将来可以成为有效的抗菌肽,如LPcin,作为新抗生素的替代品。

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