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Tetraspanin Is Required for Generation of Reactive Oxygen Species by the Dual Oxidase System in Caenorhabditis elegans
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نویسنده
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moribe h. ,konakawa r. ,koga d. ,ushiki t. ,nakamura k. ,mekada e.
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منبع
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plos genetics - 2012 - دوره : 8 - شماره : 9
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چکیده
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Reactive oxygen species (ros) are toxic but essential molecules responsible for host defense and cellular signaling. conserved nadph oxidase (nox) family enzymes direct the regulated production of ros. hydrogen peroxide (h2o2) generated by dual oxidases (duoxs),a member of the nox family,is crucial for innate mucosal immunity. in addition,h2o2 is required for cellular signaling mediated by protein modifications,such as the thyroid hormone biosynthetic pathway in mammals. in contrast to other nox isozymes,the regulatory mechanisms of duox activity are less understood. using caenorhabditis elegans as a model,we demonstrate that the tetraspanin protein is required for induction of the duox signaling pathway in conjunction with the dual oxidase maturation factor (duoxa). in the current study,we show that genetic mutation of duox (bli-3),duoxa (doxa-1),and peroxidase (mlt-7) in c. elegans causes the same defects as a tetraspanin tsp-15 mutant,represented by exoskeletal deficiencies due to the failure of tyrosine cross-linking of collagen. the deficiency in the tsp-15 mutant was restored by co-expression of bli-3 and doxa-1,indicating the involvement of tsp-15 in the generation of ros. h2o2 generation by bli-3 was completely dependent on tsp-15 when reconstituted in mammalian cells. we also demonstrated that tsp-15,bli-3,and doxa-1 form complexes in vitro and in vivo. cell-fusion-based analysis suggested that association with tsp-15 at the cell surface is crucial for bli-3 activation to release h2o2. this study provides the first evidence for an essential role of tetraspanin in ros generation. © 2012 moribe et al.
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آدرس
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department of biology,kurume university school of medicine,kurume,fukuoka,japan,department of cell biology,research institute for microbial diseases,osaka university,suita,osaka, Japan, department of cell biology,research institute for microbial diseases,osaka university,suita,osaka, Japan, division of microscopic anatomy and bio-imaging,niigata university graduate school of medical and dental sciences,chuo-ku,niigata, Japan, division of microscopic anatomy and bio-imaging,niigata university graduate school of medical and dental sciences,chuo-ku,niigata, Japan, department of cell biology,research institute for microbial diseases,osaka university,suita,osaka, Japan, department of cell biology,research institute for microbial diseases,osaka university,suita,osaka, Japan
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Authors
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