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Genomic structure and promoter analysis of PKC-delta
Kwang S Suh1, Tamara T Tatunchak, John M Crutchley
1Laboratory of Cellular Carcinogenesis and Tumor Promotion, Center for Cancer Research, National Cancer Institute, Bethesda, MD 20892, USA.
Abstract:
Protein kinase C-delta (PKC-delta) is a ubiquitously expressed kinase involved in a variety of cellular signaling pathways including cell growth, differentiation, apoptosis, tumor promotion, and carcinogenesis. While signaling pathways downstream of PKC-delta are well studied, the regulation of the gene has not been extensively analyzed. A mouse genomic DNA fragment containing the PKC-delta gene was sequenced by the primer-walking method, and the subsequent DNA sequence data were used as a query to clone Caenorhabditis elegans and human genomic homologs from the publicly available genomic databases. The genomic structures of C. elegans, mouse, rat, and human PKC-delta were analyzed, and the result revealed that PKC-delta genes comprise 12, 18, 19, and 18 exons for C. elegans, mouse, rat, and human, respectively. The translation start methionine resides in the second exon in mouse and human and in the third exon in rat. The first intron between the first exon and the exon with the translation start methionine in mammalian genes represents a very large gap, as long as 17 kb in human, indicating a complexity involved in gene splicing. Overall exon-intron genomic structure is highly conserved among mammals, while significantly diverged in C. elegans. Putative transcription factor binding sites on the 1.7-kb promoter region of the mouse gene suggest that PKC-delta might be involved in spermatogenesis, embryogenesis, development, brain generation, immune response, oxidative environment, and oncogenesis. Studies on the promoter and subsequent biological testing on mouse keratinocytes indicate that tumor necrosis factor (TNF)-alpha increases the expression of PKC-delta, and this correlates with the time of NFkappaB nuclear translocation and activation. This TNF-alpha-mediated upregulation of PKC-delta is repressed in keratinocytes that are preinfected with IkappaB superrepressor adenovirus, suggesting that NFkappaB is involved directly in PKC-delta expression.
Insights
This study analyzes the genomic structure of Protein Kinase C-delta (PKC-delta) across species, revealing conserved mammalian structures and identifying NFkappaB as a key regulator of PKC-delta expression in response to TNF-alpha.
Area of Science:
- Genomics
- Molecular Biology
- Cell Signaling
Background:
- Protein Kinase C-delta (PKC-delta) is crucial in cellular processes like growth, differentiation, and carcinogenesis.
- Regulation of PKC-delta gene expression is less understood than its downstream signaling pathways.
Purpose of the Study:
- To analyze the genomic structure of PKC-delta in various species.
- To investigate the transcriptional regulation of PKC-delta, particularly its response to TNF-alpha and the role of NFkappaB.
Main Methods:
- Sequencing of mouse PKC-delta gene fragment.
- Cloning of homologous genes from C. elegans and human databases.
- Comparative analysis of exon-intron structures in C. elegans, mouse, rat, and human.
- Identification of transcription factor binding sites in the mouse PKC-delta promoter.
- Experimental validation using mouse keratinocytes and TNF-alpha treatment, with NFkappaB pathway manipulation.
Main Results:
- Genomic structures of PKC-delta genes were determined, showing 12 exons in C. elegans and 18-19 exons in mammals.
- Mammalian exon-intron structures are conserved, but significantly diverged in C. elegans.
- A large intron (up to 17 kb) was identified in mammalian genes preceding the translation start site.
- Putative regulatory elements suggest PKC-delta involvement in development, immunity, and oncogenesis.
- Tumor Necrosis Factor-alpha (TNF-alpha) upregulates PKC-delta expression in mouse keratinocytes via NFkappaB activation.
Conclusions:
- The genomic structure of PKC-delta is conserved in mammals but distinct in C. elegans.
- NFkappaB is a direct transcriptional regulator of PKC-delta, mediating TNF-alpha-induced expression.
- These findings provide insights into the complex regulation of PKC-delta, relevant to its roles in various biological processes and diseases.