Expression of DNA-damage response genes after exposure to high LET particles used in BNCT in glioblastoma cells with altered radiosensitivity

M Martyna Araszkiewicz A Agnieszka Korgul K Katarzyna Tymińska U Urszula Kaźmierczak K Kinga Dyka P Patrycja Chuchała R Renata Grzela P Patrycja Kamińska R Roman Kuczma B Bohdan Paterczyk A Anna Stankiewicz-Drogoń B Beata Wielgus-Kutrowska (Division of Biophysics) A Agata Kustra M Michał Fryc P Piotr Bednarczyk K Kamila Maliszewska-Olejniczak

Abstract

Abstract DNA-dependent protein kinase catalytic subunit (DNA-PKcs) plays a central role in the repair of double-strand breaks (DSBs), but its deficiency alters the broader DNA damage response in glioblastoma cells exposed to α particle irradiation. Here, we investigated transcriptional changes in DNA repair pathways and cellular radiosensitivity in two isogenic glioblastoma cell lines differing in DNA-PKcs status: M059J (DNA-PKcs-deficient) and M059K (DNA-PKcs-proficient). Using pathway-focused qPCR, we profiled 30 genes involved in key DNA repair pathways and evaluated cell survival by clonogenic and MTT assays. M059J cells, despite DNA-PKcs deficiency, exhibited comparable survival fractions and higher metabolic activity than DNA-PKcs-proficient M059K cells following α particle irradiation. Irradiated M059J cells exhibited broad transcriptional upregulation of genes involved in double-strand break repair, single-strand break repair, mismatch repair, and nucleotide excision repair, reflecting compensatory activation of multiple repair mechanisms. In contrast, M059K cells displayed a restricted response, characterized primarily by strong PRKDC upregulation, the gene encoding DNA-PKcs. These findings highlight the pivotal role of DNA-PKcs status in shaping the DNA damage response and radiosensitivity of glioblastoma cells. Targeting compensatory repair pathways in DNA-PKcs-deficient tumors may offer novel strategies for radiosensitization in glioblastoma therapy.

Article Details

Volume / Issue Vol. 16, Issue 1
Published December 17, 2025
ISSN 2045-2322
Publisher Nature Portfolio

Journal Info

Scientific Reports

Nature Portfolio

ISSN: 2045-2322 Open Access Life Sciences

Authors (16)

M

Martyna Araszkiewicz

A

Agnieszka Korgul

K

Katarzyna Tymińska

U

Urszula Kaźmierczak

K

Kinga Dyka

P

Patrycja Chuchała

R

Renata Grzela

P

Patrycja Kamińska

R

Roman Kuczma

B

Bohdan Paterczyk

A

Anna Stankiewicz-Drogoń

B

Beata Wielgus-Kutrowska

Division of Biophysics

A

Agata Kustra

M

Michał Fryc

P

Piotr Bednarczyk

K

Kamila Maliszewska-Olejniczak