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Expression variation of OGG1 and HPRT gene and DNA damage in arsenic exposed industrial workers

Arsenic exposure alters redox balance, induces DNA damage, and deregulates many genes. OGG1 gene involved in base repair mechanism, for excision of 8-oxoguanine (8-oxoG) from DNA formed as a result of accumulation of ROS in cell. HPRT gene encode transferase enzymes involved in purine recycling mech...

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Autores principales: Akram, Zertashia, Mahjabeen, Ishrat, Umair, Muhammad, Fahim, Muhammad, Kayani, Mahmood Akhter, Fatima, Lulu, Ahmad, Malik Waqar, Jahan, Sarwat, Afsar, Tayyaba, Almajwal, Ali, Alruwaili, Nawaf W., Khawar, Iftikhar Ali, Razak, Suhail
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9524634/
https://www.ncbi.nlm.nih.gov/pubmed/36178927
http://dx.doi.org/10.1371/journal.pone.0273211
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author Akram, Zertashia
Mahjabeen, Ishrat
Umair, Muhammad
Fahim, Muhammad
Kayani, Mahmood Akhter
Fatima, Lulu
Ahmad, Malik Waqar
Jahan, Sarwat
Afsar, Tayyaba
Almajwal, Ali
Alruwaili, Nawaf W.
Khawar, Iftikhar Ali
Razak, Suhail
author_facet Akram, Zertashia
Mahjabeen, Ishrat
Umair, Muhammad
Fahim, Muhammad
Kayani, Mahmood Akhter
Fatima, Lulu
Ahmad, Malik Waqar
Jahan, Sarwat
Afsar, Tayyaba
Almajwal, Ali
Alruwaili, Nawaf W.
Khawar, Iftikhar Ali
Razak, Suhail
author_sort Akram, Zertashia
collection PubMed
description Arsenic exposure alters redox balance, induces DNA damage, and deregulates many genes. OGG1 gene involved in base repair mechanism, for excision of 8-oxoguanine (8-oxoG) from DNA formed as a result of accumulation of ROS in cell. HPRT gene encode transferase enzymes involved in purine recycling mechanism. The main focus of the study was to evaluate the expression variation in HPRT, OGG1 gene expression, and DNA damage of industrial workers. Blood samples of 300 occupational workers were collected from welding, brick kiln, furniture, pesticide, and paint industry (n = 60/industry) to evaluate the expression variation in HPRT, OGG1 gene expression, and DNA damage in blood cells by comet assay along with age and gender matched 300 control individuals. Blood arsenic content was higher (P<0.001) in an industrial group compared to the control. OGG1 and HPRT expression were (P<0.05) downregulated in exposed workers compared to controls. Spearman correlation analysis showed a significant positive correlation between HPRT vs OGG1 (P< 0.0001) in exposed workers compared to controls. Altered expression of both genes was observed between workers with <25years and >25years of age as well as between workers with <10years and >10year exposure. Reduced expression (P<0.05) of both genes and a high extent of DNA damage was evident in exposed smokers compared to respective non-smokers. DNA fragmentation was higher (P<0.05) in the furniture, welding and brick kiln group compared to control, and other industries. The present study suggests that altered expression of OGG1 and HPRT gene induce oxidative stress, showed a negative impact on the recycling of purines leading to DNA damage which increase the vulnerability of workers to carcinogenicity.
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spelling pubmed-95246342022-10-01 Expression variation of OGG1 and HPRT gene and DNA damage in arsenic exposed industrial workers Akram, Zertashia Mahjabeen, Ishrat Umair, Muhammad Fahim, Muhammad Kayani, Mahmood Akhter Fatima, Lulu Ahmad, Malik Waqar Jahan, Sarwat Afsar, Tayyaba Almajwal, Ali Alruwaili, Nawaf W. Khawar, Iftikhar Ali Razak, Suhail PLoS One Research Article Arsenic exposure alters redox balance, induces DNA damage, and deregulates many genes. OGG1 gene involved in base repair mechanism, for excision of 8-oxoguanine (8-oxoG) from DNA formed as a result of accumulation of ROS in cell. HPRT gene encode transferase enzymes involved in purine recycling mechanism. The main focus of the study was to evaluate the expression variation in HPRT, OGG1 gene expression, and DNA damage of industrial workers. Blood samples of 300 occupational workers were collected from welding, brick kiln, furniture, pesticide, and paint industry (n = 60/industry) to evaluate the expression variation in HPRT, OGG1 gene expression, and DNA damage in blood cells by comet assay along with age and gender matched 300 control individuals. Blood arsenic content was higher (P<0.001) in an industrial group compared to the control. OGG1 and HPRT expression were (P<0.05) downregulated in exposed workers compared to controls. Spearman correlation analysis showed a significant positive correlation between HPRT vs OGG1 (P< 0.0001) in exposed workers compared to controls. Altered expression of both genes was observed between workers with <25years and >25years of age as well as between workers with <10years and >10year exposure. Reduced expression (P<0.05) of both genes and a high extent of DNA damage was evident in exposed smokers compared to respective non-smokers. DNA fragmentation was higher (P<0.05) in the furniture, welding and brick kiln group compared to control, and other industries. The present study suggests that altered expression of OGG1 and HPRT gene induce oxidative stress, showed a negative impact on the recycling of purines leading to DNA damage which increase the vulnerability of workers to carcinogenicity. Public Library of Science 2022-09-30 /pmc/articles/PMC9524634/ /pubmed/36178927 http://dx.doi.org/10.1371/journal.pone.0273211 Text en © 2022 Akram et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Akram, Zertashia
Mahjabeen, Ishrat
Umair, Muhammad
Fahim, Muhammad
Kayani, Mahmood Akhter
Fatima, Lulu
Ahmad, Malik Waqar
Jahan, Sarwat
Afsar, Tayyaba
Almajwal, Ali
Alruwaili, Nawaf W.
Khawar, Iftikhar Ali
Razak, Suhail
Expression variation of OGG1 and HPRT gene and DNA damage in arsenic exposed industrial workers
title Expression variation of OGG1 and HPRT gene and DNA damage in arsenic exposed industrial workers
title_full Expression variation of OGG1 and HPRT gene and DNA damage in arsenic exposed industrial workers
title_fullStr Expression variation of OGG1 and HPRT gene and DNA damage in arsenic exposed industrial workers
title_full_unstemmed Expression variation of OGG1 and HPRT gene and DNA damage in arsenic exposed industrial workers
title_short Expression variation of OGG1 and HPRT gene and DNA damage in arsenic exposed industrial workers
title_sort expression variation of ogg1 and hprt gene and dna damage in arsenic exposed industrial workers
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9524634/
https://www.ncbi.nlm.nih.gov/pubmed/36178927
http://dx.doi.org/10.1371/journal.pone.0273211
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