Cytokine-stimulated release of decay-accelerating factor (DAF;CD55) from HT-29 human intestinal epithelial cells. 1998

J Nasu, and M Mizuno, and T Uesu, and K Takeuchi, and T Inaba, and S Ohya, and M Kawada, and K Shimo, and H Okada, and T Fujita, and T Tsuji
First Department of Internal Medicine, Okayama University Medical School, Japan.

Expression of DAF (CD55) is enhanced on colonic epithelial cells of patients with ulcerative colitis (UC), and stool DAF concentrations are increased in patients with active disease. Cytokines are known to modulate DAF expression in various human cells, and lesions of UC reveal altered profiles of cytokine production. In this study, we evaluate the effects of various cytokines, IL-1beta, IL-2, IL-4, IL-6, IL-8, IL-10, and interferon-gamma (IFN-gamma), on the synthesis and kinetics of DAF protein in HT-29 human intestinal epithelial cells. Using flow cytometry and an ELISA, we found that HT-29 cells constitutively express DAF on the cell surface and spontaneously release DAF into the culture supernatant under standard culture conditions. When the culture supernatant was centrifuged at 100000g, nearly a half of DAF was precipitated, indicating that one half of the released DAF was present as a membrane-bound form and the other half as a soluble form. Analysis of the culture supernatant of biotin surface-labelled HT-29 cells suggested that the soluble form DAF was derived by secretion from within the cell or by cleavage from the cell surface. Among the cytokines, IL-4 markedly, and IL-1beta moderately, enhanced the expression and the release of DAF. Actinomycin D, cycloheximide, and brefeldin A inhibited the increase in DAF release induced by IL-4 and IL-1beta stimulation. These results suggest that DAF is released from intestinal epithelial cells in response to cytokine stimulation and that IL-4 and IL-1beta are possible cytokines involved in DAF release into the colonic lumen of patients with UC.

UI MeSH Term Description Entries
D007375 Interleukin-1 A soluble factor produced by MONOCYTES; MACROPHAGES, and other cells which activates T-lymphocytes and potentiates their response to mitogens or antigens. Interleukin-1 is a general term refers to either of the two distinct proteins, INTERLEUKIN-1ALPHA and INTERLEUKIN-1BETA. The biological effects of IL-1 include the ability to replace macrophage requirements for T-cell activation. IL-1,Lymphocyte-Activating Factor,Epidermal Cell Derived Thymocyte-Activating Factor,Interleukin I,Macrophage Cell Factor,T Helper Factor,Epidermal Cell Derived Thymocyte Activating Factor,Interleukin 1,Lymphocyte Activating Factor
D003513 Cycloheximide Antibiotic substance isolated from streptomycin-producing strains of Streptomyces griseus. It acts by inhibiting elongation during protein synthesis. Actidione,Cicloheximide
D003517 Cyclopentanes A group of alicyclic hydrocarbons with the general formula R-C5H9. Cyclopentadiene,Cyclopentadienes,Cyclopentene,Cyclopentenes,Cyclopentane
D003609 Dactinomycin A compound composed of a two CYCLIC PEPTIDES attached to a phenoxazine that is derived from STREPTOMYCES parvullus. It binds to DNA and inhibits RNA synthesis (transcription), with chain elongation more sensitive than initiation, termination, or release. As a result of impaired mRNA production, protein synthesis also declines after dactinomycin therapy. (From AMA Drug Evaluations Annual, 1993, p2015) Actinomycin,Actinomycin D,Meractinomycin,Cosmegen,Cosmegen Lyovac,Lyovac-Cosmegen,Lyovac Cosmegen,Lyovac, Cosmegen,LyovacCosmegen
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000900 Anti-Bacterial Agents Substances that inhibit the growth or reproduction of BACTERIA. Anti-Bacterial Agent,Anti-Bacterial Compound,Anti-Mycobacterial Agent,Antibacterial Agent,Antibiotics,Antimycobacterial Agent,Bacteriocidal Agent,Bacteriocide,Anti-Bacterial Compounds,Anti-Mycobacterial Agents,Antibacterial Agents,Antibiotic,Antimycobacterial Agents,Bacteriocidal Agents,Bacteriocides,Agent, Anti-Bacterial,Agent, Anti-Mycobacterial,Agent, Antibacterial,Agent, Antimycobacterial,Agent, Bacteriocidal,Agents, Anti-Bacterial,Agents, Anti-Mycobacterial,Agents, Antibacterial,Agents, Antimycobacterial,Agents, Bacteriocidal,Anti Bacterial Agent,Anti Bacterial Agents,Anti Bacterial Compound,Anti Bacterial Compounds,Anti Mycobacterial Agent,Anti Mycobacterial Agents,Compound, Anti-Bacterial,Compounds, Anti-Bacterial
D015847 Interleukin-4 A soluble factor produced by activated T-LYMPHOCYTES that induces the expression of MHC CLASS II GENES and FC RECEPTORS on B-LYMPHOCYTES and causes their proliferation and differentiation. It also acts on T-lymphocytes, MAST CELLS, and several other hematopoietic lineage cells. B-Cell Growth Factor-I,B-Cell Stimulatory Factor-1,Binetrakin,IL-4,Mast Cell Growth Factor-2,B Cell Stimulatory Factor-1,B-Cell Growth Factor-1,B-Cell Proliferating Factor,B-Cell Stimulating Factor-1,B-Cell Stimulatory Factor 1,BCGF-1,BSF-1,IL4,MCGF-2,B Cell Growth Factor 1,B Cell Growth Factor I,B Cell Proliferating Factor,B Cell Stimulating Factor 1,B Cell Stimulatory Factor 1,Interleukin 4,Mast Cell Growth Factor 2
D016207 Cytokines Non-antibody proteins secreted by inflammatory leukocytes and some non-leukocytic cells, that act as intercellular mediators. They differ from classical hormones in that they are produced by a number of tissue or cell types rather than by specialized glands. They generally act locally in a paracrine or autocrine rather than endocrine manner. Cytokine
D018942 Macrolides A group of often glycosylated macrocyclic compounds formed by chain extension of multiple PROPIONATES cyclized into a large (typically 12, 14, or 16)-membered lactone. Macrolides belong to the POLYKETIDES class of natural products, and many members exhibit ANTIBIOTIC properties. Macrolide
D018958 CD55 Antigens GPI-linked membrane proteins broadly distributed among hematopoietic and non-hematopoietic cells. CD55 prevents the assembly of C3 CONVERTASE or accelerates the disassembly of preformed convertase, thus blocking the formation of the membrane attack complex. Antigens, CD55,Decay-Accelerating Factor,CD55 Antigen,Complement Decay-Accelerating Factor,Complement Decay Accelerating Factor,Decay Accelerating Factor,Decay-Accelerating Factor, Complement

Related Publications

J Nasu, and M Mizuno, and T Uesu, and K Takeuchi, and T Inaba, and S Ohya, and M Kawada, and K Shimo, and H Okada, and T Fujita, and T Tsuji
November 1999, Nihon rinsho. Japanese journal of clinical medicine,
J Nasu, and M Mizuno, and T Uesu, and K Takeuchi, and T Inaba, and S Ohya, and M Kawada, and K Shimo, and H Okada, and T Fujita, and T Tsuji
August 2006, Cancer immunology, immunotherapy : CII,
J Nasu, and M Mizuno, and T Uesu, and K Takeuchi, and T Inaba, and S Ohya, and M Kawada, and K Shimo, and H Okada, and T Fujita, and T Tsuji
January 1992, Current topics in microbiology and immunology,
J Nasu, and M Mizuno, and T Uesu, and K Takeuchi, and T Inaba, and S Ohya, and M Kawada, and K Shimo, and H Okada, and T Fujita, and T Tsuji
August 1993, Immunology letters,
J Nasu, and M Mizuno, and T Uesu, and K Takeuchi, and T Inaba, and S Ohya, and M Kawada, and K Shimo, and H Okada, and T Fujita, and T Tsuji
August 1991, Immunology letters,
J Nasu, and M Mizuno, and T Uesu, and K Takeuchi, and T Inaba, and S Ohya, and M Kawada, and K Shimo, and H Okada, and T Fujita, and T Tsuji
November 1992, British journal of cancer,
J Nasu, and M Mizuno, and T Uesu, and K Takeuchi, and T Inaba, and S Ohya, and M Kawada, and K Shimo, and H Okada, and T Fujita, and T Tsuji
August 1987, Journal of immunology (Baltimore, Md. : 1950),
J Nasu, and M Mizuno, and T Uesu, and K Takeuchi, and T Inaba, and S Ohya, and M Kawada, and K Shimo, and H Okada, and T Fujita, and T Tsuji
July 1988, Immunology,
J Nasu, and M Mizuno, and T Uesu, and K Takeuchi, and T Inaba, and S Ohya, and M Kawada, and K Shimo, and H Okada, and T Fujita, and T Tsuji
March 1999, FEMS immunology and medical microbiology,
J Nasu, and M Mizuno, and T Uesu, and K Takeuchi, and T Inaba, and S Ohya, and M Kawada, and K Shimo, and H Okada, and T Fujita, and T Tsuji
April 2019, Toxins,
Copied contents to your clipboard!