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1 ologue in S. cerevisiae that also encodes an alkaline ceramidase.
2 e been accordingly called acid, neutral, and alkaline ceramidases.
3 that Ca2+(o) markedly upregulates the human alkaline ceramidase 1 (haCER1) in HEKs; and its upregula
7 knockdown up-regulated the expression of the alkaline ceramidase 2 (ACER2), and the ACER2 up-regulati
8 demonstrate that our previously cloned human alkaline ceramidase 3 (ACER3) specifically controls the
14 Collectively, these results suggest that alkaline ceramidase activity is important for the genera
15 onstrate that the yeast gene YPC1 encodes an alkaline ceramidase activity responsible for the breakdo
16 cloning of a cDNA encoding for a novel human alkaline ceramidase (aPHC) that hydrolyzes phytoceramide
17 ramidase inhibitor D-e-MAPP, suggesting that alkaline ceramidases have a role in the generation of SP
20 e that D-e-MAPP functions as an inhibitor of alkaline ceramidase in vitro and in cells resulting in e
21 SPH and S1P increases were inhibited by the alkaline ceramidase inhibitor D-e-MAPP, suggesting that
22 loning and characterization of a novel mouse alkaline ceramidase (maCER1) with a highly restricted su
24 lkaline phytoceramidase, the first mammalian alkaline ceramidase to be identified as being specific f
25 and small interfering RNA knockdown of human alkaline ceramidase, which all increase endogenous ceram
26 accharomyces cerevisiae gene YPC1 encodes an alkaline ceramidase with a dual activity, catalyzing bot
27 r, these data suggest that maCER1 is a novel alkaline ceramidase with a stringent substrate specifici
29 s a 28 and 32% identity to the Saccharomyces alkaline ceramidases (YPC1p and YDC1p) and the human alk
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