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Main Authors: Lv, Baolei, Li, Ronggui, Li, Guantian, Yu, Huahua, Liu, Song, Li, Rongfeng
Format: Artículo científico
Language:en
Published: Toxicon : official journal of the International Society on Toxinology 2025
Subjects:
Online Access:https://pubmed.ncbi.nlm.nih.gov/40784661/
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author Lv, Baolei
Li, Ronggui
Li, Guantian
Yu, Huahua
Liu, Song
Li, Rongfeng
author_facet Lv, Baolei
Li, Ronggui
Li, Guantian
Yu, Huahua
Liu, Song
Li, Rongfeng
Lv, Baolei
Li, Ronggui
Li, Guantian
Yu, Huahua
Liu, Song
Li, Rongfeng
collection PubMed - marine biology
contents Purification, characterization and the hemolytic mechanism of the hemolysin NnTX-45 from the jellyfish Nemopilema nomurai. Lv, Baolei Li, Ronggui Li, Guantian Yu, Huahua Liu, Song Li, Rongfeng Animals Hemolysin Proteins Scyphozoa Cnidarian Venoms Hemolysis Proteomics Electrophoresis, Polyacrylamide Gel Nemopilema nomurai, a large venomous jellyfish, caused numerous stinging incidents and even many fatal cases. The venom of N. nomurai contains various toxins, with hemolysin being one of the major components that play a crucial role in stinging. However, until now, the hemolysin has not been successfully isolated from N. nomurai, and its mechanism remains unclear. In this study, we established an improved method for preparing jellyfish toxins to facilitate subsequent purification. The SDS-PAGE profiles indicated that the crude toxin extracted using this improved method contained significantly fewer components than the traditional method. Moreover, the proteomic and toxicity analysis revealed that the refined extract still contained most of the key toxins including hemolysin, phospholipase, and other toxins. The hemolysin was then isolated from the refined jellyfish crude toxins using a two-step purification of gel filtration chromatography followed by anion-exchange chromatography. The molecular mass of this hemolysin was 45 kDa (NnTX-45) with an HC of approximately 30 μg/mL. Transmission electron microscopy observations revealed that NnTX-45 formed numerous pores, each with an inner diameter of 5.65 nm and an outer diameter of 13 nm approximately, on the erythrocyte membranes. Overall, our study successfully isolated and elucidated the preliminary hemolytic mechanism of the NnTX-45 from N. nomurai, which provides a highly purified toxin antigens for the development of jellyfish antivenom to treat this jellyfish sting in the future.
format Artículo científico
id pubmed_40784661
institution PubMed
language en
publishDate 2025
publisher Toxicon : official journal of the International Society on Toxinology
record_format pubmed
spellingShingle Purification, characterization and the hemolytic mechanism of the hemolysin NnTX-45 from the jellyfish Nemopilema nomurai.
Lv, Baolei
Li, Ronggui
Li, Guantian
Yu, Huahua
Liu, Song
Li, Rongfeng
Animals
Hemolysin Proteins
Scyphozoa
Cnidarian Venoms
Hemolysis
Proteomics
Electrophoresis, Polyacrylamide Gel
Purification, characterization and the hemolytic mechanism of the hemolysin NnTX-45 from the jellyfish Nemopilema nomurai. Lv, Baolei Li, Ronggui Li, Guantian Yu, Huahua Liu, Song Li, Rongfeng Animals Hemolysin Proteins Scyphozoa Cnidarian Venoms Hemolysis Proteomics Electrophoresis, Polyacrylamide Gel Nemopilema nomurai, a large venomous jellyfish, caused numerous stinging incidents and even many fatal cases. The venom of N. nomurai contains various toxins, with hemolysin being one of the major components that play a crucial role in stinging. However, until now, the hemolysin has not been successfully isolated from N. nomurai, and its mechanism remains unclear. In this study, we established an improved method for preparing jellyfish toxins to facilitate subsequent purification. The SDS-PAGE profiles indicated that the crude toxin extracted using this improved method contained significantly fewer components than the traditional method. Moreover, the proteomic and toxicity analysis revealed that the refined extract still contained most of the key toxins including hemolysin, phospholipase, and other toxins. The hemolysin was then isolated from the refined jellyfish crude toxins using a two-step purification of gel filtration chromatography followed by anion-exchange chromatography. The molecular mass of this hemolysin was 45 kDa (NnTX-45) with an HC of approximately 30 μg/mL. Transmission electron microscopy observations revealed that NnTX-45 formed numerous pores, each with an inner diameter of 5.65 nm and an outer diameter of 13 nm approximately, on the erythrocyte membranes. Overall, our study successfully isolated and elucidated the preliminary hemolytic mechanism of the NnTX-45 from N. nomurai, which provides a highly purified toxin antigens for the development of jellyfish antivenom to treat this jellyfish sting in the future.
title Purification, characterization and the hemolytic mechanism of the hemolysin NnTX-45 from the jellyfish Nemopilema nomurai.
topic Animals
Hemolysin Proteins
Scyphozoa
Cnidarian Venoms
Hemolysis
Proteomics
Electrophoresis, Polyacrylamide Gel
url https://pubmed.ncbi.nlm.nih.gov/40784661/