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天然选择下的稀有产物:二硫键结合的超分子抗菌肽。

Rare by Natural Selection: Disulfide-Bonded Supramolecular Antimicrobial Peptides.

机构信息

Department of Biology, Technion-Israel Institute of Technology, Haifa 3200003, Israel.

European Molecular Biology Laboratory (EMBL), Hamburg 22607, Germany.

出版信息

Biomacromolecules. 2022 Mar 14;23(3):926-936. doi: 10.1021/acs.biomac.1c01353. Epub 2022 Jan 21.

Abstract

Human LL-37 is an antimicrobial peptide forming thermostable supramolecular fibrils that surround bacterial cells. The crystal structure of LL-37 bearing an I24C substitution of most buried position in the fibril revealed disulfide-bonded dimers that further assembled into a fibrillar structure of densely packed helices We further demonstrated the position-dependent controllable antibacterial activity of LL-37 I24C and other cysteine mutants, mediated by regulation of intermolecular disulfide bonds and their role in the formation of supramolecular structures. The morphology of the fibrils and their antibacterial mechanism of action might be dependent on their interactions with specific bacteria. The significant effect of disulfide bonds on the assembly into supramolecular structures and their sensitivity to reducing/oxidizing conditions may explain why short helical antimicrobial peptides with a single cysteine and an odd number of cysteines are selected against in nature.

摘要

人 LL-37 是一种抗菌肽,可形成热稳定的超分子原纤维,环绕细菌细胞。在纤维中大多数埋藏位置的 I24C 取代的 LL-37 的晶体结构揭示了二硫键结合的二聚体,其进一步组装成紧密堆积的螺旋的纤维状结构。我们进一步证明了 LL-37 I24C 和其他半胱氨酸突变体的位置依赖性可控抗菌活性,这是通过调节分子间二硫键及其在超分子结构形成中的作用介导的。纤维的形态及其抗菌作用机制可能取决于它们与特定细菌的相互作用。二硫键对组装成超分子结构的显著影响及其对还原/氧化条件的敏感性可能解释了为什么自然界中选择具有单个半胱氨酸和奇数个半胱氨酸的短螺旋抗菌肽。

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