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Venomics Reveals the Venom Complexity of Sea Anemone . | LitMetric

Venomics Reveals the Venom Complexity of Sea Anemone .

Mar Drugs

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

Published: January 2024

AI Article Synopsis

  • * A study using transcriptomic and proteomic technologies identified 728 potential toxin sequences from different tissues of a sea anemone, distinguishing between those found in the tentacles and the column.
  • * The research confirmed 101 specific protein and peptide toxins, revealing the complexity of sea anemone venoms, which could aid in developing new marine drugs and advancing our understanding of cnidarian toxins.

Article Abstract

The venoms of various sea anemones are rich in diverse toxins, which usually play a dual role in capturing prey and deterring predators. However, the complex components of such venoms have not been well known yet. Here, venomics of integrating transcriptomic and proteomic technologies was applied for the first time to identify putative protein and peptide toxins from different tissues of the representative sea anemone, . The transcriptomic analysis of identified 728 putative toxin sequences, including 442 and 381 from the tentacles and the column, respectively, and they were assigned to 68 gene superfamilies. The proteomic analysis confirmed 101 protein and peptide toxins in the venom, including 91 in the tentacles and 39 in the column. The integrated venomics also confirmed that some toxins such as the ShK-like peptides and defensins are co-expressed in both the tentacles and the column. Meanwhile, a homology analysis was conducted to predict the three-dimensional structures and potential activity of seven representative toxins. Altogether, this venomics study revealed the venom complexity of which will help deepen our understanding of cnidarian toxins, thereby supporting the in-depth development of valuable marine drugs.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10890322PMC
http://dx.doi.org/10.3390/md22020071DOI Listing

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