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Journal of advanced research. 2025 Jun 7:S2090-1232(25)00421-7. doi: 10.1016/j.jare.2025.06.013 Q111.42024

Adaptation of plateau frog peptide: From antimicrobial to angiogenic and proliferative functions

高原蛙肽的适应性进化:从抗菌到促血管生成和增殖功能 翻译改进

Kaixun Cao  1, Liting Zhang  2, Min Yang  3, Jinai Gao  3, Congshuang Deng  4, Xiaoshan Huang  3, Qian Chen  5, Qiumin Lu  3, Yizhe Cheng  6, Shaoyang Gao  6, Hui Cao  7, Ren Lai  8

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作者单位

  • 1 Key Laboratory of Agricultural Environmental Microbiology, Ministry of Agriculture and Rural Affairs, College of Life Sciences, Nanjing Agricultural University, Nanjing 210095, China; Engineering Laboratory of Peptides of Chinese Academy of Sciences, Key Laboratory of Bioactive Peptides of Yunnan Province, KIZ-CUHK Joint Laboratory of Bioresources and Molecular Research in Common Diseases, National Resource Center for Non-Human Primates, National Research Facility for Phenotypic & Genetic Analysis of Model Animals (Primate Facility), State Key Laboratory of Genetic Evolution & Animal Models, Sino-African Joint Research Center, New Cornerstone Science Laboratory, Kunming Institute of Zoology, Chinese Academy of Sciences, No.17 Longxin Road, Kunming, Yunnan 650201, China.
  • 2 Key Laboratory of Agricultural Environmental Microbiology, Ministry of Agriculture and Rural Affairs, College of Life Sciences, Nanjing Agricultural University, Nanjing 210095, China.
  • 3 Engineering Laboratory of Peptides of Chinese Academy of Sciences, Key Laboratory of Bioactive Peptides of Yunnan Province, KIZ-CUHK Joint Laboratory of Bioresources and Molecular Research in Common Diseases, National Resource Center for Non-Human Primates, National Research Facility for Phenotypic & Genetic Analysis of Model Animals (Primate Facility), State Key Laboratory of Genetic Evolution & Animal Models, Sino-African Joint Research Center, New Cornerstone Science Laboratory, Kunming Institute of Zoology, Chinese Academy of Sciences, No.17 Longxin Road, Kunming, Yunnan 650201, China.
  • 4 Shenzhen Academy of Environmental Sciences, Shenzhen, Guangdong 518022, China.
  • 5 State Key Laboratory of Quality Research in Chinese Medicine and Institute of Chinese Medical Sciences, University of Macau, Macao 999078, China.
  • 6 Novatide (Kunming) Biotechnology Co., Ltd., Kunming, China; Yunnan Characteristic Plant Extraction Laboratory Co., Ltd., Yunnan 650106, China.
  • 7 Key Laboratory of Agricultural Environmental Microbiology, Ministry of Agriculture and Rural Affairs, College of Life Sciences, Nanjing Agricultural University, Nanjing 210095, China. Electronic address: hcao@njau.edu.cn.
  • 8 Key Laboratory of Agricultural Environmental Microbiology, Ministry of Agriculture and Rural Affairs, College of Life Sciences, Nanjing Agricultural University, Nanjing 210095, China; Engineering Laboratory of Peptides of Chinese Academy of Sciences, Key Laboratory of Bioactive Peptides of Yunnan Province, KIZ-CUHK Joint Laboratory of Bioresources and Molecular Research in Common Diseases, National Resource Center for Non-Human Primates, National Research Facility for Phenotypic & Genetic Analysis of Model Animals (Primate Facility), State Key Laboratory of Genetic Evolution & Animal Models, Sino-African Joint Research Center, New Cornerstone Science Laboratory, Kunming Institute of Zoology, Chinese Academy of Sciences, No.17 Longxin Road, Kunming, Yunnan 650201, China. Electronic address: rlai@mail.kiz.ac.cn.
  • DOI: 10.1016/j.jare.2025.06.013 PMID: 40490151

    摘要 中英对照阅读

    Introduction: Amphibian skin peptides, particularly defensins, play important roles in environmental adaptation, but often exhibit functional redundancy. SC17-2, a novel peptide from the high altitude frog Nanorana parkeri, exhibits unique angiogenesis and cell migration promoting activities, allowing adaptation to the extreme environment of the Tibetan Plateau with high UV radiation and low microbial diversity.

    Objectives: This study aimed to investigate the adaptive role of SC17-2 in high-UV environments, its functional differences from typical defensins, and its potential biomedical applications in wound healing and angiogenesis.

    Methods: Bioinformatics analyses, including sequence alignment and ancestral reconstruction, identified positively selected amino acid sites in SC17-2. Molecular docking examined its interaction with the epidermal growth factor receptor (EGFR). In vitro and in vivo experiments, using mouse and zebrafish models, assessed its wound healing and angiogenic properties.

    Results: SC17-2 exhibited no antimicrobial activity, but it demonstrated antioxidant activity and potent wound healing and angiogenic properties. Molecular docking indicated that SC17-2 interacts with EGFR, potentially activating downstream signalling pathways. In vivo experiments showed that SC17-2 significantly accelerated wound healing by promoting collagen regeneration and angiogenesis, in some aspects outperforming VEGF.

    Conclusion: SC17-2 represents a unique functional divergence in amphibian peptides, driven by ecological adaptation rather than microbial pressure. Its ability to promote angiogenesis and cell migration highlights its potential as a novel therapeutic agent for regenerative medicine, shaped by the extreme conditions of the Tibetan Plateau.

    Keywords: Amphibians; Angiogenesis; EGFR; Purifying selection; Wound healing.

    Keywords:plateau frog peptide; antimicrobial; angiogenic; proliferative functions

    简介: 高原蛙*Nanorana parkeri*皮肤肽SC17-2在高海拔环境中表现出独特的促血管生成和细胞迁移活性,有助于适应青藏高原的极端环境(包括高强度紫外线辐射和低微生物多样性)。

    目的: 本研究旨在探讨SC17-2在高UV环境下适应性的作用、其与典型防御素的功能差异及其潜在的生物医学应用,特别是在伤口愈合和血管生成方面。

    方法: 通过序列比对和祖先重建等生物信息学分析确定了SC17-2中正向选择的氨基酸位点。分子对接实验研究了其与表皮生长因子受体(EGFR)的相互作用。利用小鼠和斑马鱼模型进行了体内和体外实验,评估了它的伤口愈合和血管生成特性。

    结果: SC17-2没有表现出抗菌活性,但具有抗氧化活性及强大的伤口愈合和促血管生成特性。分子对接显示SC17-2与EGFR相互作用,可能激活下游信号通路。体内实验表明,SC17-2显著加速了伤口愈合并促进了胶原蛋白再生和血管生成,在某些方面甚至优于VEGF。

    结论: SC17-2代表了两栖动物肽功能上的独特分化,其驱动因素是生态适应而非微生物压力。它促进血管生成和细胞迁移的能力突显了其作为再生医学中新型治疗剂的潜力,在青藏高原极端条件下形成。

    关键词: 两栖动物;血管生成;EGFR;纯化选择;伤口愈合。

    关键词:高原蛙肽; 抗微生物; 促血管生成; 增殖功能

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    期刊名:Journal of advanced research

    缩写:J ADV RES

    ISSN:2090-1232

    e-ISSN:2090-1224

    IF/分区:11.4/Q1

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    Adaptation of plateau frog peptide: From antimicrobial to angiogenic and proliferative functions