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The Telomere-Telomerase System Is Detrimental to Health at High-Altitude

The hypobaric-hypoxia environment at high-altitude (HA, >2500 m) may influence DNA damage due to the production of reactive molecular species and high UV radiation. The telomere system, vital to chromosomal integrity and cellular viability, is prone to oxidative damages contributing to the severi...

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Autores principales: Pasha, Qadar, Rain, Manjari, Tasnim, Sana, Kanipakam, Hema, Thinlas, Tashi, Mohammad, Ghulam
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9915065/
https://www.ncbi.nlm.nih.gov/pubmed/36767300
http://dx.doi.org/10.3390/ijerph20031935
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author Pasha, Qadar
Rain, Manjari
Tasnim, Sana
Kanipakam, Hema
Thinlas, Tashi
Mohammad, Ghulam
author_facet Pasha, Qadar
Rain, Manjari
Tasnim, Sana
Kanipakam, Hema
Thinlas, Tashi
Mohammad, Ghulam
author_sort Pasha, Qadar
collection PubMed
description The hypobaric-hypoxia environment at high-altitude (HA, >2500 m) may influence DNA damage due to the production of reactive molecular species and high UV radiation. The telomere system, vital to chromosomal integrity and cellular viability, is prone to oxidative damages contributing to the severity of high-altitude disorders such as high-altitude pulmonary edema (HAPE). However, at the same time, it is suggested to sustain physical performance. This case-control study, comprising 210 HAPE-free (HAPE-f) sojourners, 183 HAPE-patients (HAPE-p) and 200 healthy highland natives (HLs) residing at ~3500 m, investigated telomere length, telomerase activity, and oxidative stress biomarkers. Fluidigm SNP genotyping screened 65 single nucleotide polymorphisms (SNPs) in 11 telomere-maintaining genes. Significance was attained at p ≤ 0.05 after adjusting for confounders and correction for multiple comparisons. Shorter telomere length, decreased telomerase activity and increased oxidative stress were observed in HAPE patients; contrarily, longer telomere length and elevated telomerase activity were observed in healthy HA natives compared to HAPE-f. Four SNPs and three haplotypes are associated with HAPE, whereas eight SNPs and nine haplotypes are associated with HA adaptation. Various gene-gene interactions and correlations between/among clinical parameters and biomarkers suggested the presence of a complex interplay underlining HAPE and HA adaptation physiology. A distinctive contribution of the telomere-telomerase system contributing to HA physiology is evident in this study. A normal telomere system may be advantageous in endurance training.
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spelling pubmed-99150652023-02-11 The Telomere-Telomerase System Is Detrimental to Health at High-Altitude Pasha, Qadar Rain, Manjari Tasnim, Sana Kanipakam, Hema Thinlas, Tashi Mohammad, Ghulam Int J Environ Res Public Health Article The hypobaric-hypoxia environment at high-altitude (HA, >2500 m) may influence DNA damage due to the production of reactive molecular species and high UV radiation. The telomere system, vital to chromosomal integrity and cellular viability, is prone to oxidative damages contributing to the severity of high-altitude disorders such as high-altitude pulmonary edema (HAPE). However, at the same time, it is suggested to sustain physical performance. This case-control study, comprising 210 HAPE-free (HAPE-f) sojourners, 183 HAPE-patients (HAPE-p) and 200 healthy highland natives (HLs) residing at ~3500 m, investigated telomere length, telomerase activity, and oxidative stress biomarkers. Fluidigm SNP genotyping screened 65 single nucleotide polymorphisms (SNPs) in 11 telomere-maintaining genes. Significance was attained at p ≤ 0.05 after adjusting for confounders and correction for multiple comparisons. Shorter telomere length, decreased telomerase activity and increased oxidative stress were observed in HAPE patients; contrarily, longer telomere length and elevated telomerase activity were observed in healthy HA natives compared to HAPE-f. Four SNPs and three haplotypes are associated with HAPE, whereas eight SNPs and nine haplotypes are associated with HA adaptation. Various gene-gene interactions and correlations between/among clinical parameters and biomarkers suggested the presence of a complex interplay underlining HAPE and HA adaptation physiology. A distinctive contribution of the telomere-telomerase system contributing to HA physiology is evident in this study. A normal telomere system may be advantageous in endurance training. MDPI 2023-01-20 /pmc/articles/PMC9915065/ /pubmed/36767300 http://dx.doi.org/10.3390/ijerph20031935 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Pasha, Qadar
Rain, Manjari
Tasnim, Sana
Kanipakam, Hema
Thinlas, Tashi
Mohammad, Ghulam
The Telomere-Telomerase System Is Detrimental to Health at High-Altitude
title The Telomere-Telomerase System Is Detrimental to Health at High-Altitude
title_full The Telomere-Telomerase System Is Detrimental to Health at High-Altitude
title_fullStr The Telomere-Telomerase System Is Detrimental to Health at High-Altitude
title_full_unstemmed The Telomere-Telomerase System Is Detrimental to Health at High-Altitude
title_short The Telomere-Telomerase System Is Detrimental to Health at High-Altitude
title_sort telomere-telomerase system is detrimental to health at high-altitude
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9915065/
https://www.ncbi.nlm.nih.gov/pubmed/36767300
http://dx.doi.org/10.3390/ijerph20031935
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