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Ceramide Induces Myogenic Differentiation and Apoptosis in Drosophila Schneider Cells
Author(s) -
Hidemasa Kawamura,
Kazuaki Tatei,
Tetsuo aka,
Hideru Obinata,
Tomoyasu Hattori,
Ai Ogawa,
Hideko KAZAMA,
Nobuyuki Hamada,
Tomoo Funayama,
Tetsuya Sakashita,
Yasuhiko Kobayashi,
Takashi Nakano,
Takashi Izumi
Publication year - 2009
Publication title -
journal of radiation research
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.643
H-Index - 60
eISSN - 1349-9157
pISSN - 0449-3060
DOI - 10.1269/jrr.08122
Subject(s) - myogenesis , ceramide , microbiology and biotechnology , apoptosis , biology , dna damage , cellular differentiation , myocyte , schneider 2 cells , dna , gene , genetics , rna interference , rna
Cells exposed to genotoxic stress, such as ionizing radiation and DNA damaging reagents, either arrest the cell cycle to repair the genome, or undergo apoptosis, depending on the extent of the DNA damage. DNA damage also has been implicated in various differentiation processes. It has been reported that gamma-ray exposure or treatment with DNA-damaging agents could induce myogenic differentiation in Drosophila Schneider cells. However, the mechanism underlying this process has been poorly understood. In this study, exposure of Schneider cells to X-rays or energetic carbon ion beams caused increase of TUNEL-positive cells and conversion of round-shaped cells to elongated cells. Both upregulation of genes related to myogenesis and increase of myosin indicate that the radiation-induced morphological changes of Schneider cells were accompanied with myogenic differentiation. Because the intracellular ceramide was increased in Schneider cells after exposure to X-ray, we examined whether exogenous ceramide could mimic radiation-induced myogenic differentiation. Addition of membrane-permeable C(2)-ceramide to Schneider cells increased apoptosis and expression of myogenic genes. These results suggest that ceramide plays important roles in both apoptosis and the radiation-induced myogenic differentiation process.

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