Engineering Research Center of Tropical Medicine Innovation and Transformation of Ministry of Education, Hainan Key Laboratory for Research and Development of Tropical Herbs, International Joint Research Center of Human-Machine Intelligent Collaborative for Tumor Precision Diagnosis and Treatment of Hainan Province, School of Pharmacy, Hainan Medical University, Haikou 571199, China.
Mar Drugs. 2024 Oct 12;22(10):470. doi: 10.3390/md22100470.
The South China Sea is rich in sea anemone resources, and the protein and peptide components from sea anemone toxins comprise an important treasure trove for researchers to search for leading compounds. This study conducted a comprehensive transcriptomic analysis of the tentacles and column of and explored the distribution and diversity of proteins and peptides in depth using bioinformatics, initially constructing a putative protein and peptide database. In this database, typical peptide families are identified through amino acid sequence analysis, and their 3D structures and potential biological activities are revealed through AlphaFold2 modeling and molecular docking. A total of 4239 transcripts were identified, of which the putative protein accounted for 81.53%. The highest content comprised immunoglobulin and a variety of proteases, mainly distributed in the column and related to biological functions. Importantly, the putative peptide accounted for 18.47%, containing ShK domain and Kunitz-type peptides, mainly distributed in the tentacles and related to offensive predatory behavior. Interestingly, 40 putative peptides belonging to eight typical peptide families were identified, and their structures and targets were predicted. This study reveals the diversity and complexity of toxins and predicts their structure and targets based on amino acid sequences, providing a feasible approach for research regarding the discovery of peptides with potentially high activity.
南海拥有丰富的海葵资源,海葵毒素中的蛋白质和肽成分构成了研究人员寻找先导化合物的重要宝库。本研究对 和触手及柱进行了全面的转录组分析,并通过生物信息学深入探讨了蛋白质和肽的分布和多样性,初步构建了一个假定的蛋白质和肽数据库。在这个数据库中,通过氨基酸序列分析鉴定了典型的肽家族,并通过 AlphaFold2 建模和分子对接揭示了它们的 3D 结构和潜在的生物学活性。共鉴定出 4239 条转录本,其中假定蛋白占 81.53%。含量最高的是免疫球蛋白和各种蛋白酶,主要分布在柱中,与生物学功能有关。重要的是,假定肽占 18.47%,包含 ShK 结构域和 Kunitz 型肽,主要分布在触手,与进攻性捕食行为有关。有趣的是,鉴定出了 40 种属于 8 个典型肽家族的假定肽,并预测了它们的结构和靶标。本研究揭示了 的多样性和复杂性,并基于氨基酸序列预测了它们的结构和靶标,为具有潜在高活性的肽的发现提供了可行的研究方法。