Scolopendrasin I: a novel antimicrobial peptide isolated from the centipede Scolopendra subspinipes mutilans

Joon-Ha Lee, In-woo Kim, Mi-Ae Kim, E. Yun, S. Nam, M. Ahn, Young Bo Lee, Jae‐Sam Hwang
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引用次数: 8

Abstract

In a previous report, we identified several candidate antimicrobial peptides through de novo RNA sequencing of the centipede Scolopendra subspinipes mutilans . Here, we identify and characterize one of these peptides, Scolopendrasin I. We identified the centipede antimicrobial peptide Cecropin from the centipede transcriptome using an SVM algorithm, and subsequently analyzed the amino acid sequence for predicted secondary structure using a GOR algorithm. We identified an alpha helical region of Cecropin and named it Scolopendrasin I. We then assessed antimicrobial and hemolytic activity of Scolopendrasin I. Scolopendrasin I showed antimicrobial activity against various microbes, including antibiotic-resistant Gram-negative bacteria, in a radial diffusion assay. Scolopendrasin I had potent antibacterial activity against acne-associated microbes in a colony count assay and showed no hemolytic activity in a hemolysis assay. In addition, we confirmed that Scolopendrasin I bound to the surface of bacteria via a specific interaction with lipoteichoic acid and lipopolysaccharide, two components of bacterial cell membranes. In conclusion, the results presented here provide evidence that this is an efficient strategy for antimicrobial peptide candidate identification and that Scolopendrasin I has potential for successful antibiotic development.
蜈蚣抗菌肽I:一种从蜈蚣亚棘蜈蚣分离的新型抗菌肽
在之前的一篇报道中,我们通过对肢解蜈蚣(Scolopendra subspinipes mutilans)进行从头RNA测序,确定了几种候选抗菌肽。我们利用SVM算法从蜈蚣转录组中鉴定出蜈蚣抗菌肽Cecropin,随后利用GOR算法分析其氨基酸序列以预测其二级结构。我们确定了天蝎平的α螺旋区,并将其命名为“scolopdrasin I”。然后,我们评估了“scolopdrasin I”的抗菌和溶血活性。在菌落计数试验中,scolopdrasin I对痤疮相关微生物有有效的抗菌活性,在溶血试验中没有显示溶血活性。此外,我们证实了scolopdrasin I通过与细菌细胞膜的两种成分脂壁酸和脂多糖的特异性相互作用结合到细菌表面。总之,本文的研究结果表明,这是一种有效的抗菌肽候选鉴定策略,并且scolopdrasin I具有成功开发抗生素的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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