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Article

Impact of Helicobacter pylori Infection and Its Major Virulence Factor CagA on DNA Damage Repair

by
Eleftherios Kontizas
1,2,*,
Spyros Tastsoglou
3,4,
Timokratis Karamitros
5,
Yiannis Karayiannis
1,2,
Panagoula Kollia
2,
Artemis G. Hatzigeorgiou
4,6 and
Dionyssios N. Sgouras
1,*
1
Laboratory of Medical Microbiology, Hellenic Pasteur Institute, 11521 Athens, Greece
2
Department of Genetics and Biotechnology, Faculty of Biology, National and Kapodistrian University of Athens, 15772 Athens, Greece
3
Department of Electrical and Computer Engineering, University of Thessaly, 38221 Volos, Greece
4
DIANA-Lab, Hellenic Pasteur Institute, 11521 Athens, Greece
5
Bioinformatics and Applied Genomics Unit, Hellenic Pasteur Institute, 11521 Athens, Greece
6
DIANA-Lab, Department of Computer Science and Biomedical Informatics, University of Thessaly, 35131 Lamia, Greece
*
Authors to whom correspondence should be addressed.
Microorganisms 2020, 8(12), 2007; https://doi.org/10.3390/microorganisms8122007
Submission received: 26 November 2020 / Revised: 11 December 2020 / Accepted: 14 December 2020 / Published: 16 December 2020
(This article belongs to the Special Issue Helicobacter pylori and Gastric Carcinogenesis)

Abstract

Helicobacter pylori infection induces a plethora of DNA damages. Gastric epithelial cells, in order to maintain genomic integrity, require an integrous DNA damage repair (DDR) machinery, which, however, is reported to be modulated by the infection. CagA is a major H. pylori virulence factor, associated with increased risk for gastric carcinogenesis. Its pathogenic activity is partly regulated by phosphorylation on EPIYA motifs. Our aim was to identify effects of H. pylori infection and CagA on DDR, investigating the transcriptome of AGS cells, infected with wild-type, ΔCagA and EPIYA-phosphorylation-defective strains. Upon RNA-Seq-based transcriptomic analysis, we observed that a notable number of DDR genes were found deregulated during the infection, potentially resulting to base excision repair and mismatch repair compromise and an intricate deregulation of nucleotide excision repair, homologous recombination and non-homologous end-joining. Transcriptome observations were further investigated on the protein expression level, utilizing infections of AGS and GES-1 cells. We observed that CagA contributed to the downregulation of Nth Like DNA Glycosylase 1 (NTHL1), MutY DNA Glycosylase (MUTYH), Flap Structure-Specific Endonuclease 1 (FEN1), RAD51 Recombinase, DNA Polymerase Delta Catalytic Subunit (POLD1), and DNA Ligase 1 (LIG1) and, contrary to transcriptome results, Apurinic/Apyrimidinic Endodeoxyribonuclease 1 (APE1) upregulation. Our study accentuates the role of CagA as a significant contributor of H. pylori infection-mediated DDR modulation, potentially disrupting the balance between DNA damage and repair, thus favoring genomic instability and carcinogenesis.
Keywords: Helicobacter pylori; CagA; DNA damage repair; gastric carcinogenesis Helicobacter pylori; CagA; DNA damage repair; gastric carcinogenesis

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MDPI and ACS Style

Kontizas, E.; Tastsoglou, S.; Karamitros, T.; Karayiannis, Y.; Kollia, P.; Hatzigeorgiou, A.G.; Sgouras, D.N. Impact of Helicobacter pylori Infection and Its Major Virulence Factor CagA on DNA Damage Repair. Microorganisms 2020, 8, 2007. https://doi.org/10.3390/microorganisms8122007

AMA Style

Kontizas E, Tastsoglou S, Karamitros T, Karayiannis Y, Kollia P, Hatzigeorgiou AG, Sgouras DN. Impact of Helicobacter pylori Infection and Its Major Virulence Factor CagA on DNA Damage Repair. Microorganisms. 2020; 8(12):2007. https://doi.org/10.3390/microorganisms8122007

Chicago/Turabian Style

Kontizas, Eleftherios, Spyros Tastsoglou, Timokratis Karamitros, Yiannis Karayiannis, Panagoula Kollia, Artemis G. Hatzigeorgiou, and Dionyssios N. Sgouras. 2020. "Impact of Helicobacter pylori Infection and Its Major Virulence Factor CagA on DNA Damage Repair" Microorganisms 8, no. 12: 2007. https://doi.org/10.3390/microorganisms8122007

APA Style

Kontizas, E., Tastsoglou, S., Karamitros, T., Karayiannis, Y., Kollia, P., Hatzigeorgiou, A. G., & Sgouras, D. N. (2020). Impact of Helicobacter pylori Infection and Its Major Virulence Factor CagA on DNA Damage Repair. Microorganisms, 8(12), 2007. https://doi.org/10.3390/microorganisms8122007

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