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Apoptosis in Pam212, an epidermal keratinocyte cell line: a possible role for bcl-2 in epidermal differentiation
J Marthinuss1, L Lawrence, M Seiberg
1Skin Biology Research Center, R. W. Johnson Pharmaceutical Research Institute, Raritan, New Jersey 08869, USA.
Abstract:
Programmed cell death is a controlled process that leads to the elimination of single cells via apoptosis, a mode of cell death with a characteristic morphology. During epidermal differentiation, keratinocytes migrate outward to become terminally differentiated cornified cells in a process involving programmed cell death pathway(s) and apoptosis. The molecular mechanisms regulating epidermal differentiation and apoptosis have not yet been elucidated. Here we show that a mouse keratinocyte cell line, Pam212, undergoes spontaneous apoptosis in culture. Apoptosis of Pam212 cells is demonstrated by both morphology and DNA oligonucleosomal degradation. The expression of bcl-2, a gene implicated in the negative control of apoptosis, was down-regulated in these cells by transfecting a bcl-2-antisense expression vector. The cells that down-regulate bcl-2 expression exhibit enhanced apoptosis and further progress in the epidermal differentiation pathway. We analyzed the expression patterns of several genes that have been implicated in apoptosis in other systems. We show that the mRNA levels of c-myc, c-myb, c-fos, tumor necrosis factors (TNF) alpha and beta, TNF receptors I and II, interleukin 1 alpha, IFN-gamma, and transforming growth factor beta increase in the antisense-transfected cells. We suggest that bcl-2 influences epidermal differentiation in Pam212 keratinocyte cells, and maybe in vivo, by negatively regulating several genes that are involved in apoptosis.
Insights
Programmed cell death, or apoptosis, is crucial for epidermal differentiation. Down-regulating the bcl-2 gene enhances keratinocyte apoptosis and differentiation, suggesting bcl-2 regulates key genes in this process.
Area of Science:
- Cell Biology
- Molecular Biology
- Dermatology
Background:
- Programmed cell death, specifically apoptosis, is vital for epidermal differentiation.
- The molecular mechanisms governing keratinocyte differentiation and apoptosis remain unclear.
- The mouse keratinocyte cell line Pam212 exhibits spontaneous apoptosis in culture.
Purpose of the Study:
- To investigate the role of bcl-2 in regulating epidermal differentiation and apoptosis in keratinocytes.
- To elucidate the molecular mechanisms underlying bcl-2's influence on keratinocyte differentiation.
Main Methods:
- Utilized a mouse keratinocyte cell line (Pam212) undergoing spontaneous apoptosis.
- Down-regulated bcl-2 expression using a bcl-2-antisense expression vector.
- Analyzed changes in apoptosis markers (morphology, DNA degradation) and gene expression (mRNA levels of various apoptosis-related genes).
Main Results:
- Down-regulation of bcl-2 expression in Pam212 cells led to enhanced apoptosis.
- Cells with reduced bcl-2 expression showed increased progression in the epidermal differentiation pathway.
- Upregulation of several apoptosis-related genes, including c-myc, c-myb, c-fos, TNF-alpha/beta, TNF receptors I/II, IL-1alpha, IFN-gamma, and TGF-beta, was observed.
Conclusions:
- bcl-2 negatively regulates apoptosis and influences epidermal differentiation in Pam212 keratinocytes.
- bcl-2 may control epidermal differentiation, potentially in vivo, by modulating the expression of multiple apoptosis-associated genes.