Institute of Translational Medicine, Faculty of Health Sciences, University of Macau, Avenida da Univesidade, Taipa, Macau, China.
School of Pharmacy, Queen's University Belfast, 97 Lisburn Road, Belfast BT9 7BL, UK.
Int J Mol Sci. 2021 Apr 26;22(9):4509. doi: 10.3390/ijms22094509.
Temporin is an antimicrobial peptide (AMP) family discovered in the skin secretion of ranid frog that has become a promising alternative for conventional antibiotic therapy. Herein, a novel temporin peptide, Temporin-PF (TPF), was successfully identified from . It exhibited potent activity against Gram-positive bacteria, but no effect on Gram-negative bacteria. Additionally, TPF exhibited aggregation effects in different solutions. Three analogs were further designed to study the relationship between the aggregation patterns and bioactivities, and the MD simulation was performed for revealing the pattern of the peptide assembly. As the results showed, all peptides were able to aggregate in the standard culture media and salt solutions, especially CaCl and MgCl buffers, where the aggregation was affected by the concentration of the salts. MD simulation reported that all peptides were able to form oligomers. The parent peptide assembly depended on the hydrophobic interaction via the residues in the middle domain of the sequence. However, the substitution of Trp/D-Trp resulted in an enhanced inter-peptide interaction in the zipper-like domain and eliminated overall biological activities. Our study suggested that introducing aromaticity at the zipper-like domain for temporin may not improve the bioactivities, which might be related to the formation of aggregates via the inter-peptide contacts at the zipper-like motif domain, and it could reduce the binding affinity to the lipid membrane of microorganisms.
蛙皮抗菌肽(Temporin)是在蛙皮肤分泌物中发现的一种抗菌肽家族,已成为传统抗生素治疗的一种有前途的替代方法。本文从. 中成功鉴定出一种新型蛙皮抗菌肽 Temporin-PF(TPF)。它对革兰氏阳性菌表现出强大的活性,但对革兰氏阴性菌没有影响。此外,TPF 在不同溶液中表现出聚集效应。进一步设计了三个类似物来研究聚集模式与生物活性之间的关系,并进行了 MD 模拟以揭示肽组装的模式。结果表明,所有肽都能够在标准培养基和盐溶液中聚集,特别是 CaCl 和 MgCl 缓冲液,其中盐的浓度会影响聚集。MD 模拟表明,所有肽都能够形成低聚物。母肽的组装取决于通过序列中间域的疏水性相互作用。然而,色氨酸/ D-色氨酸的取代导致拉链状结构域中增强的肽间相互作用,从而消除了整体生物活性。我们的研究表明,在拉链状结构域中引入芳香性可能不会提高抗菌肽的生物活性,这可能与拉链状结构域中通过肽间接触形成聚集体有关,并且可能降低与微生物脂膜的结合亲和力。