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三甘氨酸到色氨酸突变的重组蜂毒素-Thanatin 肽的抗菌活性。

Antimicrobial activity of the recombinant peptide Melittin-Thanatin with three glycine to tryptophan mutations.

机构信息

College of Veterinary Medicine, Northwest A&F University, Yangling, China.

College of Animal Science and Technology, Tarim University, Alar, China.

出版信息

Prep Biochem Biotechnol. 2023;53(7):849-859. doi: 10.1080/10826068.2022.2151016. Epub 2022 Dec 12.

Abstract

The antimicrobial peptide was considered an important target for developing novel antibacterial drugs. However, the unstable biological activity and the low antibacterial activity are challenges for the application of recombinant proteins. In this study, the fusion peptide of Melittin-Thanatin (MT) was designed and produced, and its derivative sequence (MT-W) was obtained by replacing three glycines (Gly, G) with tryptophan (Trp, W). The MT-W peptide were synthesized in WB700 by EDDIE self-cleavage protein fusion. Compared with MT, MT-W exhibited 2-4 times higher antibacterial rate against K88. In addition, MT-W showed lower cytotoxicity (IC50 > 300 mg·L) to the red blood cell, and more stable biological activities under the conditions of different temperatures (20, 30, 40, 50, 60, 70, 80, and 90 °C), pH values (2.0, 3.0, 4.0, 5.0, 6.0, 7.0, 8.0, and 9.0) and different proteases. Especially, MT-W showed a broader antibacterial effect on three drug-resistant strains than florfenicol and oxytetracycline calcium. In conclusion, compared with MT, the MT-W showed increased antibacterial activity, stability, lower cytotoxicity, and broader antimicrobial effect. Therefore, it would become a promising alternative to conventional antibiotics.

摘要

抗菌肽被认为是开发新型抗菌药物的重要靶标。然而,重组蛋白的生物活性不稳定和抗菌活性低是其应用的挑战。在本研究中,设计并生产了蜂毒素-Thanatin(MT)融合肽,并通过将三个甘氨酸(Gly,G)替换为色氨酸(Trp,W)获得了其衍生序列(MT-W)。MT-W 肽由 EDDIE 自切割蛋白融合在 WB700 中合成。与 MT 相比,MT-W 对 K88 的抗菌率提高了 2-4 倍。此外,MT-W 对红细胞的细胞毒性(IC50>300mg·L)更低,并且在不同温度(20、30、40、50、60、70、80 和 90°C)、不同 pH 值(2.0、3.0、4.0、5.0、6.0、7.0、8.0 和 9.0)和不同蛋白酶条件下具有更稳定的生物活性。特别是,MT-W 对三种耐药菌株的抗菌效果比氟苯尼考和土霉素钙更广。总之,与 MT 相比,MT-W 表现出更高的抗菌活性、稳定性、更低的细胞毒性和更广泛的抗菌作用。因此,它可能成为传统抗生素的一种有前途的替代品。

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