Inhibition of the chimeric DnaJ-PKAc enzyme by endogenous inhibitor proteins
April M Averill1, Hibba Tul Rehman2,3, Joseph W Charles4
1Department of Microbiology and Molecular Genetics, Larner College of Medicine, University of Vermont, Burlington, Vermont.
Abstract:
The chimeric DnaJ-PKAc enzymeresulting from an approximately 400-kb deletion of chromosome 19 is a primary contributor to the oncogenic transformation that occurs in fibrolamellar hepatocellular carcinoma, also called fibrolamellar carcinoma (FLC). This oncogenic deletion juxtaposes exon 1 of the DNAJB1 heat shock protein gene with exon 2 of the PRKACA gene encoding the protein kinase A catalytic subunit, resulting in DnaJ-PKAc fusion under the transcriptional control of the DNAJB1 promoter. The expression of DnaJ-PKAc is approximately 10 times that of wild-type (wt) PKAc catalytic subunits, causing elevated and dysregulated kinase activity that contributes to oncogenic transformation. In normal cells, PKAc activity is regulated by a group of endogenous proteins, termed protein kinase inhibitors (PKI) that competitively inhibit PKAc and assist with the nuclear export of the enzyme. Currently, it is scarcely known whether interactions with PKI are perturbed in DnaJ-PKAc. In this report, we survey existing data sets to assess the expression levels of the various PKI isoforms that exist in humans to identify those that are candidates to encounter DnaJ-PKAc in both normal liver and FLC tumors. We then compare inhibition profiles of wtPKAc and DnaJ-PKAc against PKI and demonstrate that extensive structural homology in the active site clefts of the two enzymes confers similar kinase activities and inhibition by full-length PKI and PKI-derived peptides.
Insights
The DnaJ-PKAc fusion protein drives fibrolamellar carcinoma (FLC) by dysregulating protein kinase A (PKAc) activity. This study found that protein kinase inhibitors (PKI) can still inhibit both normal and fused PKAc, suggesting potential therapeutic strategies for FLC.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Fibrolamellar carcinoma (FLC) is driven by a chimeric DnaJ-PKAc enzyme, a product of a large chromosomal deletion.
- This fusion protein results in significantly elevated and dysregulated protein kinase A (PKAc) activity, contributing to oncogenesis.
Purpose of the Study:
- To investigate the interaction between the oncogenic DnaJ-PKAc fusion protein and endogenous protein kinase inhibitors (PKI) in FLC.
- To assess the expression of PKI isoforms in normal liver and FLC tumors.
- To compare the inhibition profiles of wild-type PKAc and DnaJ-PKAc by PKI.
Main Methods:
- Bioinformatic analysis of existing datasets to determine PKI isoform expression levels in human liver and FLC.
- Biochemical assays to compare the kinase activity and inhibition by PKI of wild-type PKAc and the DnaJ-PKAc fusion enzyme.
Main Results:
- The study identified candidate PKI isoforms likely to interact with DnaJ-PKAc in both normal liver and FLC tissues.
- Structural homology between wild-type PKAc and DnaJ-PKAc in the active site cleft was observed.
- Both wild-type PKAc and DnaJ-PKAc demonstrated similar kinase activities and susceptibility to inhibition by full-length PKI and PKI-derived peptides.
Conclusions:
- Despite its oncogenic role, DnaJ-PKAc retains sensitivity to inhibition by endogenous PKI.
- The findings suggest that PKI-based therapeutic strategies may be viable for treating fibrolamellar carcinoma.
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