Regulation of alkaline ceramidase activity by the c-Src-mediated pathway

•Ceramidase activity was decreased by c-Src-shRNA and the c-Src inhibitors (74).•Ceramidase activity was enhanced by expression of c-Src and vanadate (69).•Alkaline ceramidase, possibly ACER2, was regulated by c-Src (60).•c-Src-induced activation of ACER2 was independent on Ca2+ activation (69). Cer...

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Veröffentlicht in:Archives of biochemistry and biophysics 2014-05, Vol.550-551, p.12-19
Hauptverfasser: Sasaki, Hirotsune, Toyomura, Kaori, Matsuzaki, Wataru, Okamoto, Aya, Yamaguchi, Naoto, Nakamura, Hiroyuki, Murayama, Toshihiko
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Sprache:eng
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Zusammenfassung:•Ceramidase activity was decreased by c-Src-shRNA and the c-Src inhibitors (74).•Ceramidase activity was enhanced by expression of c-Src and vanadate (69).•Alkaline ceramidase, possibly ACER2, was regulated by c-Src (60).•c-Src-induced activation of ACER2 was independent on Ca2+ activation (69). Ceramidase hydrolyzes ceramide to fatty acids and sphingosine, and sphingosine is then converted to sphingosine-1-phosphate. Ceramide and sphingosine-1-phosphate act as signaling molecules. Although stimuli coupling to protein kinases-dependent systems have been shown to regulate ceramidase activity, the exact role of c-Src-mediated signal has not been elucidated. We examined the effects of the downregulation of c-Src activity and c-Src overexpression on ceramidase activity in cells. In A549, CHO, and HeLa cells labeled with a fluorescent ceramide, 4-nitrobenzo-2-oxa-1,3-diazole-labeled C6-ceramide (NBD-ceramide), the downregulation of c-Src by c-Src-shRNA and pharmacological inhibitors including SU6656 decreased levels of NBD-caproic acid. The overexpression of c-Src increased NBD-caproic acid levels in CHO and HeLa cells. Similar results were obtained in Na3VO4-treated cells having higher NBD-caproic acid levels. The downregulation and overexpression of c-Src decreased and increased ceramidase activity, respectively, in the lysates of A549 cells at pH 8.8. The ceramidase sensitivity to substrates, pH, and Ca2+ suggest that the c-Src- and SU6656-sensitive ceramidase is alkaline ceramidase (ACER), possibly Ca2+-activated ACER2. Serum starvation increased both ceramidase activity at pH 8.8 and expression of ACER2. Our data suggest that c-Src-mediated signal positively regulates ACER activity in a Ca2+-independent manner.
ISSN:0003-9861
1096-0384
DOI:10.1016/j.abb.2014.03.012