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Published on: January 7, 2019
Molecular alterations and tumor suppressive function of the DUSP22 (Dual Specificity Phosphatase 22) gene in
Pierre Mélard1,2, Yamina Idrissi1, Laetitia Andrique1,3
1Institut National de la Santé et de la Recherche Médicale (Inserm) U1053, Universitaire de Bordeaux, F-33076 Bordeaux, France.
Abstract:
Monoallelic 6p25.3 rearrangements associated with DUSP22 (Dual Specificity Phosphatase 22) gene silencing have been reported in CD30+ peripheral T-cell lymphomas (PTCL), mostly with anaplastic morphology and of cutaneous origin. However, the mechanism of second allele silencing and the putative tumor suppressor function of DUSP22 have not been investigated so far. Here, we show that the presence, in most individuals, of an inactive paralog hampers genetic and epigenetic evaluation of the DUSP22 gene. Identification of DUSP22-specific single-nucleotide polymorphisms haplotypes and fluorescence in situ hybridization and epigenetic characterization of the paralog status led us to develop a comprehensive strategy enabling reliable identification of DUSP22 alterations. We showed that one cutaneous anaplastic large T-cell lymphomas (cALCL) case with monoallelic 6p25.3 rearrangement and DUSP22 silencing harbored exon 1 somatic mutations associated with second allele inactivation. Another cALCL case carried an intron 1 somatic splice site mutation with predicted deleterious exon skipping effect. Other tested PTCL cases with 6p25.3 rearrangement exhibited neither mutation nor deletion nor methylation accounting for silencing of the non-rearranged DUSP22 allele, thus inactivated by a so far unknown mechanism. We also characterized the expression status of four DUSP22 splice variants and found that they are all silenced in cALCL cases with 6p25.3 breakpoints. We finally showed that restoring expression of the physiologically predominant isoform in DUSP22-deficient malignant T cells inhibits cellular expansion by stimulating apoptosis and impairs soft agar clonogenicity and tumorigenicity. This study therefore shows that DUSP22 behaves as a tumor suppressor gene in PTCL.
Insights
Dual Specificity Phosphatase 22 (DUSP22) gene silencing contributes to peripheral T-cell lymphomas (PTCL). Restoring DUSP22 expression inhibits cancer cell growth, confirming its tumor suppressor role in PTCL.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Monoallelic 6p25.3 rearrangements linked to DUSP22 (Dual Specificity Phosphatase 22) gene silencing are observed in CD30+ peripheral T-cell lymphomas (PTCL).
- The mechanisms of second allele silencing and DUSP22's tumor suppressor function in PTCL remain largely unexplored.
Purpose of the Study:
- Investigate the mechanisms of DUSP22 second allele silencing in PTCL.
- Determine the tumor suppressor role of DUSP22 in PTCL development.
Main Methods:
- Developed a comprehensive strategy using SNP haplotypes, FISH, and epigenetic analysis to identify DUSP22 alterations, accounting for an inactive paralog.
- Analyzed somatic mutations, deletions, and methylation in PTCL cases with 6p25.3 rearrangements.
- Assessed the functional impact of DUSP22 re-expression in DUSP22-deficient malignant T cells.
Main Results:
- Identified somatic mutations (exon 1, intron 1 splice site) causing second allele inactivation in some cutaneous anaplastic large T-cell lymphomas (cALCL) with DUSP22 silencing.
- Found that other PTCL cases with 6p25.3 rearrangements lacked identifiable mechanisms for silencing the non-rearranged DUSP22 allele.
- Demonstrated that re-expression of DUSP22's predominant isoform inhibited malignant T-cell expansion, induced apoptosis, and reduced clonogenicity and tumorigenicity.
Conclusions:
- DUSP22 inactivation occurs through various mechanisms in PTCL, including somatic mutations and potentially unknown pathways.
- DUSP22 functions as a tumor suppressor gene in PTCL, highlighting its therapeutic potential.
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