Dominant suppressor genes of p53-induced apoptosis in Drosophila melanogaster

Author:

Szlanka Tamás123,Lukacsovich Tamás4,Bálint Éva13,Virágh Erika123,Szabó Kornélia35,Hajdu Ildikó3,Molnár Enikő3,Lin Yu-Hsien2ORCID,Zvara Ágnes6,Kelemen-Valkony Ildikó7,Méhi Orsolya3,Török István5,Hegedűs Zoltán89,Kiss Brigitta3,Ramasz Beáta3,Magdalena Laura M3,Puskás László6,Mechler Bernard M5,Fónagy Adrien10,Asztalos Zoltán111,Steinbach Gábor7,Žurovec Michal2,Boros Imre1,Kiss István3

Affiliation:

1. Institute of Biochemistry, HUN-REN Biological Research Centre , 6726 Szeged , Hungary

2. Biology Centre, Czech Academy of Sciences , 37005 České Budějovice , Czech Republic

3. Institute of Genetics, HUN-REN Biological Research Centre , 6726 Szeged , Hungary

4. Brain Research Institute, University of Zurich , 8057 Zurich , Switzerland

5. Department of Developmental Genetics, German Cancer Research Centre , 69120 Heidelberg , Germany

6. Laboratory of Functional Genomics, Core Facility, HUN-REN Biological Research Centre , 6726 Szeged , Hungary

7. Cellular Imaging Laboratory, Core Facility, HUN-REN Biological Research Centre , 6726 Szeged , Hungary

8. Bioinformatics Laboratory, Core Facility, HUN-REN Biological Research Centre , 6726 Szeged , Hungary

9. Department of Biochemistry and Medical Chemistry, Medical School, University of Pécs , 7624 Pécs , Hungary

10. Centre for Agricultural Sciences, Plant Protection Institute , 1022 Budapest , Hungary

11. Aktogen Hungary Ltd. , 6726 Szeged , Hungary

Abstract

Abstract One of the major functions of programmed cell death (apoptosis) is the removal of cells that suffered oncogenic mutations, thereby preventing cancerous transformation. By making use of a Double-Headed-EP (DEP) transposon, a P element derivative made in our laboratory, we made an insertional mutagenesis screen in Drosophila melanogaster to identify genes that, when overexpressed, suppress the p53-activated apoptosis. The DEP element has Gal4-activatable, outward-directed UAS promoters at both ends, which can be deleted separately in vivo. In the DEP insertion mutants, we used the GMR-Gal4 driver to induce transcription from both UAS promoters and tested the suppression effect on the apoptotic rough eye phenotype generated by an activated UAS-p53 transgene. By DEP insertions, 7 genes were identified, which suppressed the p53-induced apoptosis. In 4 mutants, the suppression effect resulted from single genes activated by 1 UAS promoter (Pka-R2, Rga, crol, and Spt5). In the other 3 (Orct2, Polr2M, and stg), deleting either UAS promoter eliminated the suppression effect. In qPCR experiments, we found that the genes in the vicinity of the DEP insertion also showed an elevated expression level. This suggested an additive effect of the nearby genes on suppressing apoptosis. In the eukaryotic genomes, there are coexpressed gene clusters. Three of the DEP insertion mutants are included, and 2 are in close vicinity of separate coexpressed gene clusters. This raises the possibility that the activity of some of the genes in these clusters may help the suppression of the apoptotic cell death.

Funder

Hungarian Scientific Research Fund

German Research Foundation (DFG)-Hungarian Academy of Sciences (MTA) Collaboration Program

NKFIH

European Community’s Program Interreg Bayern Tschechische Republik

Publisher

Oxford University Press (OUP)

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