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从海葵物种中发现新型肽神经毒素。

Discovery of novel peptide neurotoxins from sea anemone species.

作者信息

Fu Jinxing, Liao Yanling, Jin Ai-Hua, Gao Bingmiao

机构信息

Key Laboratory of Tropical Translational Medicine of Ministry of Education, Hainan Key Laboratory for Research and Development of Tropical Herbs, Hainan Medical University, 571199 Haikou, Hainan, China.

Institute for Molecular Bioscience, The University of Queensland, St. Lucia, Brisbane, QLD 4072, Australia.

出版信息

Front Biosci (Landmark Ed). 2021 Nov 30;26(11):1256-1273. doi: 10.52586/5022.


DOI:10.52586/5022
PMID:34856766
Abstract

As primitive metazoa, sea anemones are rich in various bioactive peptide neurotoxins. These peptides have been applied to neuroscience research tools or directly developed as marine drugs. To date, more than 1100 species of sea anemones have been reported, but only 5% of the species have been used to isolate and identify sea anemone peptide neurotoxins. There is an urgent need for more systematic discovery and study of peptide neurotoxins in sea anemones. In this review, we have gathered the currently available methods from crude venom purification and gene cloning to venom multiomics, employing these techniques for discovering novel sea anemone peptide neurotoxins. In addition, the three-dimensional structures and targets of sea anemone peptide neurotoxins are summarized. Therefore, the purpose of this review is to provide a reference for the discovery, development, and utilization of sea anemone peptide neurotoxins.

摘要

作为原始后生动物,海葵富含各种生物活性肽神经毒素。这些肽已被用作神经科学研究工具,或直接开发成海洋药物。迄今为止,已报道的海葵种类超过1100种,但只有5%的种类被用于分离和鉴定海葵肽神经毒素。迫切需要对海葵中的肽神经毒素进行更系统的发现和研究。在这篇综述中,我们收集了从粗毒液纯化、基因克隆到毒液多组学的现有方法,利用这些技术发现新型海葵肽神经毒素。此外,还总结了海葵肽神经毒素的三维结构和作用靶点。因此,本综述的目的是为海葵肽神经毒素的发现、开发和利用提供参考。

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Discovery of novel peptide neurotoxins from sea anemone species.

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引用本文的文献

[1]
Methods matter: Comparison of techniques used for sea anemone venom extraction.

Toxicon X. 2025-3-8

[2]
Isolation and cDNA cloning of four peptide toxins from the sea anemone .

J Venom Anim Toxins Incl Trop Dis. 2024-10-28

[3]
Molecular Insights into the Low Complexity Secreted Venom of Calliactis polypus.

Genome Biol Evol. 2024-8-5

[4]
Advances in Biosensors for the Rapid Detection of Marine Biotoxins: Current Status and Future Perspectives.

Biosensors (Basel). 2024-4-19

[5]
Diversity analysis of sea anemone peptide toxins in different tissues of Heteractis crispa based on transcriptomics.

Sci Rep. 2024-4-1

[6]
Synthesis and Hypoglycemic Effect of Insulin from the Venom of Sea Anemone .

Mar Drugs. 2024-2-27

[7]
Anxiolytic, Analgesic and Anti-Inflammatory Effects of Peptides Hmg 1b-2 and Hmg 1b-4 from the Sea Anemone .

Toxins (Basel). 2023-5-15

[8]
A Tale of Toxin Promiscuity: The Versatile Pharmacological Effects of Hcr 1b-2 Sea Anemone Peptide on Voltage-Gated Ion Channels.

Mar Drugs. 2022-2-17

[9]
AsKC11, a Kunitz Peptide from , Is a Novel Activator of G Protein-Coupled Inward-Rectifier Potassium Channels.

Mar Drugs. 2022-2-15

[10]
Implications of bleaching on cnidarian venom ecology.

Toxicon X. 2022-1-31

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