Origami of KR-12 Designed Antimicrobial Peptides and Their Potential Applications

Jayaram Lakshmaiah Narayana, Abraham Fikru Mechesso, Imran Ibni Gani Rather, D. Zarena, Jinghui Luo, Jingwei Xie, Guangshun Wang
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Abstract

This review describes the discovery, structure, activity, engineered constructs, and applications of KR-12, the smallest antibacterial peptide of human cathelicidin LL-37, the production of which can be induced under sunlight or by vitamin D. It is a moonlighting peptide that shows both antimicrobial and immune-regulatory effects. Compared to LL-37, KR-12 is extremely appealing due to its small size, lack of toxicity, and narrow-spectrum antimicrobial activity. Consequently, various KR-12 peptides have been engineered to tune peptide activity and stability via amino acid substitution, end capping, hybridization, conjugation, sidechain stapling, and backbone macrocyclization. We also mention recently discovered peptides KR-8 and RIK-10 that are shorter than KR-12. Nano-formulation provides an avenue to targeted delivery, controlled release, and increased bioavailability. In addition, KR-12 has been covalently immobilized on biomaterials/medical implants to prevent biofilm formation. These constructs with enhanced potency and stability are demonstrated to eradicate drug-resistant pathogens, disrupt preformed biofilms, neutralize endotoxins, and regulate host immune responses. Also highlighted are the safety and efficacy of these peptides in various topical and systemic animal models. Finaly, we summarize the achievements and discuss future developments of KR-12 peptides as cosmetic preservatives, novel antibiotics, anti-inflammatory peptides, and microbiota-restoring agents.
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KR-12 设计抗菌肽的折纸及其潜在应用
这篇综述介绍了 KR-12 的发现、结构、活性、工程构建物和应用。KR-12 是人类柔毛苷 LL-37 的最小抗菌肽,它的产生可以在阳光下或由维生素 D 诱导。与 LL-37 相比,KR-12 因其体积小、无毒性和窄谱抗菌活性而极具吸引力。因此,人们对各种 KR-12 肽进行了改造,通过氨基酸替代、末端封端、杂交、共轭、侧链缝合和骨架大环化等方法来调整肽的活性和稳定性。我们还提到了最近发现的比 KR-12 更短的肽 KR-8 和 RIK-10。纳米制剂为靶向给药、控释和提高生物利用率提供了一条途径。此外,KR-12 还被共价固定在生物材料/医疗植入物上,以防止生物膜的形成。事实证明,这些效力和稳定性更强的构筑物可以根除耐药病原体、破坏预先形成的生物膜、中和内毒素并调节宿主免疫反应。此外,我们还重点介绍了这些肽在各种局部和全身动物模型中的安全性和有效性。最后,我们总结了 KR-12 肽作为化妆品防腐剂、新型抗生素、消炎肽和微生物群恢复剂所取得的成就,并讨论了其未来的发展。
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