Comparison of Antimicrobial Properties and Toxicity of Natural S3 Peptide with Horseshoe Crab Amoebocyte Origin and its Mutants

Sadegh Rezaei, S. Hadadian, R. A. Khavari nejad, D. Norouzian
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Abstract

Introduction: Antimicrobial peptides (AMPs) are compounds with antimicrobial properties that are studied widely due to the development of resistance of pathogenic bacteria to antibiotics. In the present study, the toxicity and antimicrobial effects of two natural monomeric peptides (S3 and S∆3) were compared with S3-S∆3 hybrids and S3 tetramers. Material & Methods: Protein hybrids (S∆3S3-2mer-GS) S3-S∆3 and tetramer protein S3 (S3-4mer-GS) were expressed in E. coli . BL21 (DE3). Following that, the presence of mutant peptides was confirmed, and their antimicrobial activity was compared and evaluated with S3 and S∆3 monomers. Finally, the toxicity of tetramer and hybrid made on the MDA-MB-231 cell line was evaluated and compared. Findings: The toxicity of the hybrid was slightly increased, compared to the tetramer for eukaryotic cells; however, this increase was negligible at the active concentration of this protein. Cell survival for hybrids was lower for S3 and SΔ3; nonetheless, cell survival for each sequence decreased with increasing time. Furthermore, the inhibition of hybrid microbial growth was improved and compared with tetramer and S3-SΔ3. It was found that an increase in the positive charge of the hybrid protein did not have a toxic effect on the host bacteria. Discussion & Conclusion: Due to the appropriate expression and increased antimicrobial activity and negligible cytotoxicity, the hybrid peptide S3-S∆3 and tetramer S3 can be considered an effective production strategy to obtain AMPs.
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天然S3肽与鲎变形虫及其突变体的抗菌性能和毒性比较
导语:抗菌肽(Antimicrobial peptides, AMPs)是一种具有抗菌特性的化合物,由于病原菌对抗生素的耐药性的发展而被广泛研究。在本研究中,比较了两种天然单体肽(S3和S∆3)与S3-S∆3杂交体和S3四聚体的毒性和抗菌作用。材料与方法:在大肠杆菌中表达蛋白杂交体(S∆3S3-2mer-GS) S3-S∆3和四聚体蛋白S3 (S3-4mer- gs)。BL21 (DE3)。随后,证实突变肽的存在,并与S3和S∆3单体比较和评价其抗菌活性。最后比较了四聚体和杂交体对MDA-MB-231细胞株的毒性。结果:与对真核细胞的四聚体相比,杂交种的毒性略有增加;然而,在这种蛋白质的活性浓度下,这种增加可以忽略不计。S3和SΔ3的杂交细胞存活率较低;然而,每个序列的细胞存活率随着时间的增加而下降。此外,与四聚体和S3-SΔ3相比,对杂交微生物生长的抑制作用有所提高。结果发现,杂交蛋白正电荷的增加对宿主细菌没有毒性作用。讨论与结论:由于合适的表达,增加了抗菌活性和忽略细胞毒性,杂合肽S3- s∆3和四聚体S3可以被认为是获得amp的有效生产策略。
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