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Updated: Dec 20, 2025

Evaluation of Caspase Activation to Assess Innate Immune Cell Death
Published on: January 20, 2023
An effector caspase Sp-caspase first identified in mud crab Scylla paramamosain exhibiting immune response and cell
Jishan Li1, Lixia Dong1, Depeng Zhu1
1State Key Laboratory of Marine Environmental Science, College of Ocean & Earth Sciences, Xiamen University, Xiamen, Fujian, China.
Abstract:
Apoptosis plays a key role in the immune defense against pathogen infection, and caspase is one of the most important protease enzyme families, which could initiate and execute apoptosis. Among crustaceans, several caspase genes have been reported. However, caspase in mud crab Scylla paramamosain, have not been identified yet. Here, in the present study, we characterized a new caspase, named as Sp-caspase, from S. paramamosain. The full-length cDNA sequence of Sp-caspase contained 966 bp open reading frame, encoding 322 amino acids, and its molecular weight was 36 kDa. This gene has three conserved domains of the caspase family, a prodomain, a large subunit P20 and a small subunit P10. Phylogenetic analysis showed that Sp-caspase was clustered into an effector caspase group. Sp-caspase mainly distributed in midgut, hepatopancreas, hemocytes and female ovaries, and the transcript was significantly regulated in different tissues after being challenged with Vibrio parahaemolyticus, Vibrio alginolyticus or LPS. After infection with V. alginolyticus, the apoptosis rate of hemocytes notably increased, while the mRNA level of Sp-caspase and hydrolysis activity of caspase 3/7 significantly decreased. Furthermore, in vitro assays showed that the recombinant protein tSp-caspase (deletion of Sp-caspase prodomain) could efficiently recognize and cleave human caspase 3/7 substrate Ac-DEVD-pNA, functioning as an effector caspase. Meanwhile, heterologous expression of Sp-caspase in several cell lines (HEK293T cells, HeLa cells and HighFive cells) could specifically induce cell apoptosis. Taken together, these data demonstrated that Sp-caspase could perform apoptosis as an effector caspase. In addition, it might be a negative regulator of hemocytes apoptosis under pathogen infection, which would contribute to homeostasis and immune defense of hemocytes in S. paramamosain.
Insights
We identified Sp-caspase, an effector caspase in mud crabs, crucial for immune defense. This caspase regulates hemocyte apoptosis during pathogen infection, potentially maintaining immune homeostasis.
Area of Science:
- Marine biology
- Immunology
- Molecular biology
Background:
- Apoptosis is vital for immune defense against pathogens.
- Caspases are key proteases initiating and executing apoptosis.
- Caspase genes in mud crabs (Scylla paramamosain) remained uncharacterized.
Purpose of the Study:
- To characterize a novel caspase, Sp-caspase, from the mud crab Scylla paramamosain.
- To investigate the function and regulation of Sp-caspase in immune response.
Main Methods:
- cDNA sequencing and sequence analysis of Sp-caspase.
- Phylogenetic analysis to determine caspase group.
- Gene expression analysis in various tissues after pathogen challenge.
- In vitro enzymatic activity assays using recombinant protein.
- Heterologous expression in cell lines to assess apoptosis induction.
Main Results:
- Sp-caspase cDNA sequence identified, encoding a 36 kDa protein with conserved caspase domains.
- Phylogenetic analysis placed Sp-caspase within the effector caspase group.
- Sp-caspase expression was regulated in response to Vibrio spp. and LPS challenge.
- Infection with V. alginolyticus decreased Sp-caspase mRNA and caspase 3/7 activity, despite increased hemocyte apoptosis.
- Recombinant tSp-caspase cleaved caspase 3/7 substrates, and its expression induced apoptosis in heterologous cell lines.
Conclusions:
- Sp-caspase functions as an effector caspase in Scylla paramamosain.
- Sp-caspase may act as a negative regulator of hemocyte apoptosis during bacterial infection.
- This regulation contributes to hemocyte homeostasis and immune defense in mud crabs.
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