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源自人抗菌肽LL-37核磁共振结构的选择性抗生物膜肽SK-24的结构与活性

Structure and Activity of a Selective Antibiofilm Peptide SK-24 Derived from the NMR Structure of Human Cathelicidin LL-37.

作者信息

Zhang Yingxia, Lakshmaiah Narayana Jayaram, Wu Qianhui, Dang Xiangli, Wang Guangshun

机构信息

Department of Pathology and Microbiology, College of Medicine, University of Nebraska Medical Center, 985900 Nebraska Medical Center, Omaha, NE 68198-5900, USA.

出版信息

Pharmaceuticals (Basel). 2021 Nov 30;14(12):1245. doi: 10.3390/ph14121245.

Abstract

The deployment of the innate immune system in humans is essential to protect us from infection. Human cathelicidin LL-37 is a linear host defense peptide with both antimicrobial and immune modulatory properties. Despite years of studies of numerous peptides, SK-24, corresponding to the long hydrophobic domain (residues 9-32) in the anionic lipid-bound NMR structure of LL-37, has not been investigated. This study reports the structure and activity of SK-24. Interestingly, SK-24 is entirely helical (~100%) in phosphate buffer (PBS), more than LL-37 (84%), GI-20 (75%), and GF-17 (33%), while RI-10 and 17BIPHE2 are essentially randomly coiled (helix%: 7-10%). These results imply an important role for the additional N-terminal amino acids (likely E16) of SK-24 in stabilizing the helical conformation in PBS. It is proposed herein that SK-24 contains the minimal sequence for effective oligomerization of LL-37. Superior to LL-37 and RI-10, SK-24 shows an antimicrobial activity spectrum comparable to the major antimicrobial peptides GF-17 and GI-20 by targeting bacterial membranes and forming a helical conformation. Like the engineered peptide 17BIPHE2, SK-24 has a stronger antibiofilm activity than LL-37, GI-20, and GF-17. Nevertheless, SK-24 is least hemolytic at 200 µM compared with LL-37 and its other peptides investigated herein. Combined, these results enabled us to appreciate the elegance of the long amphipathic helix SK-24 nature deploys within LL-37 for human antimicrobial defense. SK-24 may be a useful template of therapeutic potential.

摘要

人体固有免疫系统的部署对于保护我们免受感染至关重要。人源杀菌肽LL-37是一种具有抗菌和免疫调节特性的线性宿主防御肽。尽管对众多肽进行了多年研究,但对应于LL-37阴离子脂质结合NMR结构中长疏水结构域(第9 - 32位氨基酸)的SK-24尚未得到研究。本研究报道了SK-24的结构和活性。有趣的是,SK-24在磷酸盐缓冲液(PBS)中完全呈螺旋结构(约100%),比LL-37(84%)、GI-20(75%)和GF-17(33%)的螺旋比例都高,而RI-10和17BIPHE2基本呈无规卷曲(螺旋比例:7 - 10%)。这些结果表明SK-24额外添加的N端氨基酸(可能是E16)在PBS中稳定螺旋构象方面发挥重要作用。本文提出SK-24包含LL-37有效寡聚化的最小序列。通过靶向细菌膜并形成螺旋构象,SK-24的抗菌活性谱优于LL-37和RI-10,与主要抗菌肽GF-17和GI-20相当。与工程肽17BIPHE2一样,SK-24具有比LL-37、GI-20和GF-17更强的抗生物膜活性。然而,与LL-37及本文研究的其他肽相比,SK-24在200 µM时溶血活性最低。综合这些结果,我们得以领略SK-24这种长两亲性螺旋结构在人体抗菌防御中自然存在于LL-37内的精妙之处。SK-24可能是具有治疗潜力的有用模板。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fa60/8703873/78a919637311/pharmaceuticals-14-01245-g001.jpg

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