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Mol. Cells 2005; 19(2): 185-190

Published online January 1, 1970

© The Korean Society for Molecular and Cellular Biology

Induction of Apoptosis in Chicken Oviduct Cells by C2-Ceramide

Sung Hak Kim, Ji Young Choi, Choon-Ryoul Sihn, Eun Jung Suh, Sun Young Kim, Kang Duk Choi, Iksoo Jeon, Jae Yong Han, Tae-Yoon Kim, Sang Hoon Kim

Abstract

The chicken oviduct is a dynamic organ that produces secretory proteins such as ovalbumin and its cells undergo cell proliferation and differentiation. There has been no study of the cellular mechanism involved in cell death in the chicken oviduct. Therefore, this study has focused on the study of apoptosis in primary oviduct cells. Because ceramide is known to activate apoptosis in tumor cells and is produced in the oviduct, we used an exogenous ceramide analog to induce cell death. The viability of ceramide-treated chicken oviduct cells decreased in a dose-dependent manner and apoptotic cells were detected by staining with annexin V. The expression of apoptosis-related genes was assessed by RT-PCR and bcl-2 mRNA was found to decrease after exposure to ceramide while Bcl-x mRNA increased 12 h post-treatment. In addition, caspase-3 was expressed strongly in the early stages of apoptosis, while caspase-1 and -9 transcripts increased at later times. We conclude that ceramide induces apoptosis in oviduct-derived primary cells via a caspase- and bcl-2- dependent pathway.

Keywords Apoptosis; Ceramide; Chicken Oviduct Cells

Article

Research Article

Mol. Cells 2005; 19(2): 185-190

Published online April 30, 2005

Copyright © The Korean Society for Molecular and Cellular Biology.

Induction of Apoptosis in Chicken Oviduct Cells by C2-Ceramide

Sung Hak Kim, Ji Young Choi, Choon-Ryoul Sihn, Eun Jung Suh, Sun Young Kim, Kang Duk Choi, Iksoo Jeon, Jae Yong Han, Tae-Yoon Kim, Sang Hoon Kim

Abstract

The chicken oviduct is a dynamic organ that produces secretory proteins such as ovalbumin and its cells undergo cell proliferation and differentiation. There has been no study of the cellular mechanism involved in cell death in the chicken oviduct. Therefore, this study has focused on the study of apoptosis in primary oviduct cells. Because ceramide is known to activate apoptosis in tumor cells and is produced in the oviduct, we used an exogenous ceramide analog to induce cell death. The viability of ceramide-treated chicken oviduct cells decreased in a dose-dependent manner and apoptotic cells were detected by staining with annexin V. The expression of apoptosis-related genes was assessed by RT-PCR and bcl-2 mRNA was found to decrease after exposure to ceramide while Bcl-x mRNA increased 12 h post-treatment. In addition, caspase-3 was expressed strongly in the early stages of apoptosis, while caspase-1 and -9 transcripts increased at later times. We conclude that ceramide induces apoptosis in oviduct-derived primary cells via a caspase- and bcl-2- dependent pathway.

Keywords: Apoptosis, Ceramide, Chicken Oviduct Cells

Mol. Cells
Jun 30, 2023 Vol.46 No.6, pp. 329~398
COVER PICTURE
The cellular proteostasis network is adaptively modulated upon cellular stress, thereby protecting cells from proteostasis collapse. Heat shock induces the translocation of misfolded proteins and the chaperone protein HSP70 into nucleolus, where nuclear protein quality control primarily occurs. Nuclear RNA export factor 1 (green), nucleolar protein fibrillarin (red), and nuclei (blue) were visualized in NIH3T3 cells under basal (left) and heat shock (right) conditions (Park et al., pp. 374-386).

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