Related Experiment Video
Updated: Aug 22, 2026

Measuring Composition of CD95 Death-Inducing Signaling Complex and Processing of Procaspase-8 in this Complex
Published on: August 2, 2021
Identification and characterization of a FasL-like protein and cDNAs encoding the channel catfish death-inducing
Scott Long1, Melanie Wilson, Eva Bengtén
1Department of Microbiology, University of Mississippi Medical Center, 2500 North State Street, Jackson, MS 39216, USA.
Abstract:
To elucidate cytolytic mechanisms in the channel catfish, lysates from catfish lymphoid and fibroblast cell lines were screened by Western blot analysis using a panel of antibodies reactive with components of the mammalian apoptotic pathway. Strong reactivity with three proteins (approximate Mr 70,000, 37,000, and 15,000) was seen using an antibody targeted to mammalian Fas ligand (FasL). The sizes of the two smaller proteins are consistent with their tentative designation as membrane-bound (37,000 Mr) and soluble (15,000 Mr) FasL. Treatments known to induce FasL in mammalian systems (e.g., PMA/calcium ionophore, UV-irradiation) induced expression of the 37,000- Mr protein in catfish T-cell lines. Moreover, expression of the 37,000- Mr protein in clonal T cells was up-regulated by increasing cell density. At the nucleotide level, homologues of Fas receptor (FasR), FADD, and caspase 8 were identified and characterized. These gene products likely constitute the teleost equivalent of the death-inducing signaling complex (DISC). FADD was constitutively expressed in all (T, B, macrophage, and fibroblast) cell lines examined as well as in peripheral blood lymphocytes (PBL), whereas FasR and caspase 8 were expressed in all cell lines except CCO, a FasL-positive fibroblast line. In contrast to FasL, expression of FasR and caspase 8 was inversely proportional to cell density. Collectively these studies identified four membrane-proximal proteins involved in the initiation of apoptosis in channel catfish and suggest that mechanisms of cell-mediated cytotoxicity in teleosts are similar to those used by mammals.
Insights
Researchers identified key proteins involved in apoptosis in channel catfish, suggesting similar cell-mediated cytotoxicity mechanisms to mammals. This study sheds light on fish immune responses and Fas ligand (FasL) pathways.
Area of Science:
- Immunology
- Cell Biology
- Aquatic Animal Health
Background:
- Understanding apoptosis mechanisms is crucial for fish health.
- The Fas ligand (FasL) pathway is a key mediator of apoptosis in mammals.
Purpose of the Study:
- To elucidate cytolytic mechanisms in channel catfish.
- To identify components of the apoptotic pathway in teleosts.
Main Methods:
- Western blot analysis of catfish cell lines using antibodies against mammalian apoptotic proteins.
- Identification and characterization of Fas receptor (FasR), FADD, and caspase 8 homologues at the nucleotide level.
Main Results:
- Identified three proteins reactive to anti-mammalian FasL antibodies, including potential membrane-bound and soluble FasL.
- Induced expression of a 37,000-Mr protein (putative membrane-bound FasL) in catfish T-cells.
- Characterized FasR, FADD, and caspase 8 homologues, suggesting a teleost death-inducing signaling complex (DISC).
Conclusions:
- Channel catfish possess FasL, FasR, FADD, and caspase 8, forming a functional apoptotic pathway.
- Teleost cell-mediated cytotoxicity mechanisms are similar to those in mammals.
- Identified four membrane-proximal proteins initiating apoptosis in channel catfish.
Related Concept Videos
Assembly of Signaling Complexes
Interaction domains in cell signaling
Interaction domains recognize exposed features of their binding partners containing post-translationally modified sequences,...
Catenins
Catenins in Cell Junctions
Catenins bind to cell adhesion molecules such as cadherins and link them to different cytoskeletal proteins depending on the type of cell junction. At the adherens...
Calmodulin-dependent Signaling
The Ca2+-CaM complex does not have enzymatic activity by itself. Instead, the complex binds downstream target proteins, including membrane proteins or enzymes,...

