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Common genetic variations in telomere length genes and lung cancer: a Mendelian randomisation study and its novel application in lung tumour transcriptome

BACKGROUND: Genome-wide association studies (GWASs) have identified genetic susceptibility variants for both leukocyte telomere length (LTL) and lung cancer susceptibility. Our study aims to explore the shared genetic basis between these traits and investigate their impact on somatic environment of...

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Autores principales: Cortez Cardoso Penha, Ricardo, Smith-Byrne, Karl, Atkins, Joshua R, Haycock, Philip C, Kar, Siddhartha, Codd, Veryan, Samani, Nilesh J, Nelson, Christopher, Milojevic, Maja, Gabriel, Aurélie AG, Amos, Christopher, Brennan, Paul, Hung, Rayjean J, Kachuri, Linda, Mckay, James D
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10118386/
https://www.ncbi.nlm.nih.gov/pubmed/37079368
http://dx.doi.org/10.7554/eLife.83118
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author Cortez Cardoso Penha, Ricardo
Smith-Byrne, Karl
Atkins, Joshua R
Haycock, Philip C
Kar, Siddhartha
Codd, Veryan
Samani, Nilesh J
Nelson, Christopher
Milojevic, Maja
Gabriel, Aurélie AG
Amos, Christopher
Brennan, Paul
Hung, Rayjean J
Kachuri, Linda
Mckay, James D
author_facet Cortez Cardoso Penha, Ricardo
Smith-Byrne, Karl
Atkins, Joshua R
Haycock, Philip C
Kar, Siddhartha
Codd, Veryan
Samani, Nilesh J
Nelson, Christopher
Milojevic, Maja
Gabriel, Aurélie AG
Amos, Christopher
Brennan, Paul
Hung, Rayjean J
Kachuri, Linda
Mckay, James D
author_sort Cortez Cardoso Penha, Ricardo
collection PubMed
description BACKGROUND: Genome-wide association studies (GWASs) have identified genetic susceptibility variants for both leukocyte telomere length (LTL) and lung cancer susceptibility. Our study aims to explore the shared genetic basis between these traits and investigate their impact on somatic environment of lung tumours. METHODS: We performed genetic correlation, Mendelian randomisation (MR), and colocalisation analyses using the largest available GWASs summary statistics of LTL (N=464,716) and lung cancer (N=29,239 cases and 56,450 controls). Principal components analysis based on RNA-sequencing data was used to summarise gene expression profile in lung adenocarcinoma cases from TCGA (N=343). RESULTS: Although there was no genome-wide genetic correlation between LTL and lung cancer risk, longer LTL conferred an increased risk of lung cancer regardless of smoking status in the MR analyses, particularly for lung adenocarcinoma. Of the 144 LTL genetic instruments, 12 colocalised with lung adenocarcinoma risk and revealed novel susceptibility loci, including MPHOSPH6, PRPF6, and POLI. The polygenic risk score for LTL was associated with a specific gene expression profile (PC2) in lung adenocarcinoma tumours. The aspect of PC2 associated with longer LTL was also associated with being female, never smokers, and earlier tumour stages. PC2 was strongly associated with cell proliferation score and genomic features related to genome stability, including copy number changes and telomerase activity. CONCLUSIONS: This study identified an association between longer genetically predicted LTL and lung cancer and sheds light on the potential molecular mechanisms related to LTL in lung adenocarcinomas. FUNDING: Institut National du Cancer (GeniLuc2017-1-TABAC-03-CIRC-1-TABAC17‐022), INTEGRAL/NIH (5U19CA203654-03), CRUK (C18281/A29019), and Agence Nationale pour la Recherche (ANR-10-INBS-09).
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spelling pubmed-101183862023-04-21 Common genetic variations in telomere length genes and lung cancer: a Mendelian randomisation study and its novel application in lung tumour transcriptome Cortez Cardoso Penha, Ricardo Smith-Byrne, Karl Atkins, Joshua R Haycock, Philip C Kar, Siddhartha Codd, Veryan Samani, Nilesh J Nelson, Christopher Milojevic, Maja Gabriel, Aurélie AG Amos, Christopher Brennan, Paul Hung, Rayjean J Kachuri, Linda Mckay, James D eLife Epidemiology and Global Health BACKGROUND: Genome-wide association studies (GWASs) have identified genetic susceptibility variants for both leukocyte telomere length (LTL) and lung cancer susceptibility. Our study aims to explore the shared genetic basis between these traits and investigate their impact on somatic environment of lung tumours. METHODS: We performed genetic correlation, Mendelian randomisation (MR), and colocalisation analyses using the largest available GWASs summary statistics of LTL (N=464,716) and lung cancer (N=29,239 cases and 56,450 controls). Principal components analysis based on RNA-sequencing data was used to summarise gene expression profile in lung adenocarcinoma cases from TCGA (N=343). RESULTS: Although there was no genome-wide genetic correlation between LTL and lung cancer risk, longer LTL conferred an increased risk of lung cancer regardless of smoking status in the MR analyses, particularly for lung adenocarcinoma. Of the 144 LTL genetic instruments, 12 colocalised with lung adenocarcinoma risk and revealed novel susceptibility loci, including MPHOSPH6, PRPF6, and POLI. The polygenic risk score for LTL was associated with a specific gene expression profile (PC2) in lung adenocarcinoma tumours. The aspect of PC2 associated with longer LTL was also associated with being female, never smokers, and earlier tumour stages. PC2 was strongly associated with cell proliferation score and genomic features related to genome stability, including copy number changes and telomerase activity. CONCLUSIONS: This study identified an association between longer genetically predicted LTL and lung cancer and sheds light on the potential molecular mechanisms related to LTL in lung adenocarcinomas. FUNDING: Institut National du Cancer (GeniLuc2017-1-TABAC-03-CIRC-1-TABAC17‐022), INTEGRAL/NIH (5U19CA203654-03), CRUK (C18281/A29019), and Agence Nationale pour la Recherche (ANR-10-INBS-09). eLife Sciences Publications, Ltd 2023-04-20 /pmc/articles/PMC10118386/ /pubmed/37079368 http://dx.doi.org/10.7554/eLife.83118 Text en © 2023, Cortez Cardoso Penha et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Epidemiology and Global Health
Cortez Cardoso Penha, Ricardo
Smith-Byrne, Karl
Atkins, Joshua R
Haycock, Philip C
Kar, Siddhartha
Codd, Veryan
Samani, Nilesh J
Nelson, Christopher
Milojevic, Maja
Gabriel, Aurélie AG
Amos, Christopher
Brennan, Paul
Hung, Rayjean J
Kachuri, Linda
Mckay, James D
Common genetic variations in telomere length genes and lung cancer: a Mendelian randomisation study and its novel application in lung tumour transcriptome
title Common genetic variations in telomere length genes and lung cancer: a Mendelian randomisation study and its novel application in lung tumour transcriptome
title_full Common genetic variations in telomere length genes and lung cancer: a Mendelian randomisation study and its novel application in lung tumour transcriptome
title_fullStr Common genetic variations in telomere length genes and lung cancer: a Mendelian randomisation study and its novel application in lung tumour transcriptome
title_full_unstemmed Common genetic variations in telomere length genes and lung cancer: a Mendelian randomisation study and its novel application in lung tumour transcriptome
title_short Common genetic variations in telomere length genes and lung cancer: a Mendelian randomisation study and its novel application in lung tumour transcriptome
title_sort common genetic variations in telomere length genes and lung cancer: a mendelian randomisation study and its novel application in lung tumour transcriptome
topic Epidemiology and Global Health
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10118386/
https://www.ncbi.nlm.nih.gov/pubmed/37079368
http://dx.doi.org/10.7554/eLife.83118
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