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Exploring the active core of a novel antimicrobial peptide, palustrin-2LTb, from the Kuatun frog, Hylarana latouchii, using a bioinformatics-directed approach.

Wanchen Zou | Yingqi Zhang | Mei Zhou | Xiaoling Chen | Chengbang Ma | Tao Wang | Yangyang Jiang | Tianbao Chen | Chris Shaw | Lei Wang
Computational and structural biotechnology journal | 2022

Antimicrobial peptides (AMPs), one of the most promising next-generation antibiotics to address the problem of antibiotic-resistance, have gained increasing attention in recent decades. However, some bottlenecks, such as high manufacturing costs and high toxicity, have greatly hindered their development. To overcome these problems, we developed an efficient modification approach to find the valid active-core fragments of AMPs by mimicking the cleavage process of trypsin-like specificity proteases in silico, and truncating the peptide. Herein, we used the structure of a novel AMP, palustrin-2LTb, as the template and synthesised a set of interceptive peptides using computer-aided design and prediction. Functional screening data indicated that truncated fragment 3 not only maintained and optimised antimicrobial efficacy of the parent peptide but also showed great in vivo therapeutic potential in an MRSA-infected insect larvae model. Overall, the demonstration of the therapeutic efficacy of fragment 3 showcases the efficiency of our approach for future modification of AMPs.

Pubmed ID: 36420150

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PROCHECK (tool)

RRID:SCR_019043

Software tool to check stereochemical quality of protein structures. Its outputs comprise number of plots in PostScript format and comprehensive residue by residue listing. Includes PROCHECK-NMR for checking quality of structures solved by NMR.

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