International Journal of Molecular Sciences (Feb 2022)

Nucleotide Excision Repair Pathway Activity Is Inhibited by Airborne Particulate Matter (PM<sub>10</sub>) through XPA Deregulation in Lung Epithelial Cells

  • Ericka Marel Quezada-Maldonado,
  • Yolanda I. Chirino,
  • María Eugenia Gonsebatt,
  • Rocío Morales-Bárcenas,
  • Yesennia Sánchez-Pérez,
  • Claudia M. García-Cuellar

DOI
https://doi.org/10.3390/ijms23042224
Journal volume & issue
Vol. 23, no. 4
p. 2224

Abstract

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Airborne particulate matter with a diameter size of ≤10 µm (PM10) is a carcinogen that contains polycyclic aromatic hydrocarbons (PAH), which form PAH–DNA adducts. However, the way in which these adducts are managed by DNA repair pathways in cells exposed to PM10 has been partially described. We evaluated the effect of PM10 on nucleotide excision repair (NER) activity and on the levels of different proteins of this pathway that eliminate bulky DNA adducts. Our results showed that human lung epithelial cells (A549) exposed to 10 µg/cm2 of PM10 exhibited PAH–DNA adducts as well as an increase in RAD23 and XPD protein levels (first responders in NER). In addition, PM10 increased the levels of H4K20me2, a recruitment signal for XPA. However, we observed a decrease in total and phosphorylated XPA (Ser196) and an increase in phosphatase WIP1, aside from the absence of XPA–RPA complex, which participates in DNA-damage removal. Additionally, an NER activity assay demonstrated inhibition of the NER functionality in cells exposed to PM10, indicating that XPA alterations led to deficiencies in DNA repair. These results demonstrate that PM10 exposure induces an accumulation of DNA damage that is associated with NER inhibition, highlighting the role of PM10 as an important contributor to lung cancer.

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