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研究蜜蜂毒液肽蜂毒明肽在平台中的免疫调节作用。

Investigating the immunomodulatory effects of honeybee venom peptide apamin in platforms.

作者信息

Wei Yanan, Jia Wenjie, Sun Yanying, Zhang Tianmu, Miao Hongyu, Wu Zekun, Dong Ran, Ning Fangyong, Kim Woo Jae

机构信息

The HIT Center for Life Sciences (HCLS), School of Life Science and Technology, Harbin Institute of Technology, Harbin, China.

College of Animal Science and Technology, Northeast Agricultural University, Harbin, China.

出版信息

Infect Immun. 2025 Jul 8;93(7):e0013125. doi: 10.1128/iai.00131-25. Epub 2025 Jun 5.

Abstract

Apamin, an 18-amino-acid honeybee venom peptide, although traditionally recognized for its neurotoxic effects, demonstrates potent antimicrobial properties in our research when genetically expressed in . This antimicrobial efficacy is independent of its disulfide bonds and is enhanced when the peptide is membrane-tethered. Apamin selectively inhibits pathogenic bacteria, such as , , and , while promoting beneficial bacteria like thereby improving the gut microbiome. This gut-localized antimicrobial activity is associated with increased intestinal stem cell proliferation, midgut acidification, and enteroendocrine cell calcium signaling. Furthermore, apamin's antimicrobial function relies on specific peptidoglycan recognition proteins, particularly PGRP-LA and PGRP-SCs. Apamin expression alone is sufficient to restore the integrity of the gut barrier compromised by stressful conditions. Ultimately, apamin supplementation enhances honeybee gut health in the presence of ingested bacteria. The expression of other honeybee antimicrobial peptides also significantly reduces bacterial infection in flies. Overall, our study provides a comprehensive understanding of honeybee venom peptides and antimicrobial peptides functions, utilizing the model system to unravel their mechanisms of action and therapeutic potential.

摘要

蜂毒明肽是一种由18个氨基酸组成的蜜蜂毒液肽,尽管传统上因其神经毒性作用而被认可,但在我们的研究中,当它在……中进行基因表达时,显示出强大的抗菌特性。这种抗菌功效与其二硫键无关,并且当该肽与膜相连时会增强。蜂毒明肽选择性地抑制诸如……、……和……等病原菌,同时促进像……这样的有益菌,从而改善肠道微生物群。这种肠道局部的抗菌活性与肠道干细胞增殖增加、中肠酸化和肠内分泌细胞钙信号传导有关。此外,蜂毒明肽的抗菌功能依赖于特定的肽聚糖识别蛋白,特别是PGRP-LA和PGRP-SCs。单独的蜂毒明肽表达足以恢复因应激条件而受损的肠道屏障的完整性。最终,在摄入细菌的情况下,补充蜂毒明肽可增强蜜蜂肠道健康。其他蜜蜂抗菌肽的表达也显著降低了果蝇中的细菌感染。总体而言,我们的研究利用……模型系统,全面了解了蜜蜂毒液肽和抗菌肽的功能,揭示了它们的作用机制和治疗潜力。

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