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.
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http://dx.doi.org/10.1007/s00251-004-0701-2 | DOI Listing |
J Fish Biol
January 2025
Key Laboratory of Freshwater Biodiversity Conservation Ministry of Agriculture and Rural Affairs of China, Yangtze River Fisheries Research Institute, Chinese Academy of Fishery Sciences, Wuhan, China.
NOD-like receptors are significant contributors to the immune response of fish against different types of pathogen invasion. NOD1 and NOD2 genes of yellow catfish (Tachysurus fulvidraco) were identified and characterized in this study. Yellow catfish NOD1 and NOD2 have open reading frames (ORFs) of 2841 and 2949 bp, encoding 946 and 982 amino acids, respectively.
View Article and Find Full Text PDFAnat Rec (Hoboken)
January 2025
Department of Integrative Biology, University of California, Berkeley, California, USA.
The Weberian apparatus is a hearing specialization unique to the otophysan fishes, and an unexpected degree of morphological variation exists in species of the Noturus catfishes. Our aim in this study is to investigate relationships between morphological variations and ecology that may drive this variation. Sampling 48 specimens representing 25 species, we investigated morphological diversity and accounted for ecological variables using landmark-based 3D geometric morphometrics and x-ray-based computed tomography (CT) images.
View Article and Find Full Text PDFJ Helminthol
January 2025
Toho University, Faculty of Science, 2-2-1 Miyama, Funabashi, Chiba274-8510, Japan.
During 2021 through 2023, the golden mussel and freshwater fishes were sampled from 28 sites in the Tone River system, Japan, and adult trematodes of were found in the fishes. Molecular and morphological analyses based on 28S rDNA and the ITS1-5.8S-ITS2 region revealed the trematode as '', previously reported in Mainland China and likely introduced to Japan.
View Article and Find Full Text PDFJ Trace Elem Med Biol
January 2025
The Department of Chemistry and Biochemistry, Mississippi College, Clinton, MS, United States.
Industrial expansion and population growth have lowered water quality, polluting aquatic ecosystems world-wide. Metal pollution in the rivers across the United States are a major health concern. The level of metal contamination in fish from the Lower Mississippi River Basin and their threat to public health were last evaluated 20 years ago.
View Article and Find Full Text PDFComp Biochem Physiol B Biochem Mol Biol
January 2025
Department of Gastroenterology, Zhongnan Hospital of Wuhan University, Wuhan 430071, China. Electronic address:
Yersinia ruckeri is known to cause enteric red mouth disease (ERM) in channel catfish (Ictalurus punctatus). This study established a model of Y. ruckeri-induced intestinal inflammation in channel catfish.
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