Accès ouvert déclaré
2023
article
Genomic–transcriptomic evolution in lung cancer and metastasis
Carlos Martínez‐Ruiz, James R. Black, Clare Puttick, Mark S. Hill, Jonas Demeulemeester, Elizabeth Larose Cadieux, Kerstin Thol, Thomas Peter Jones, Selvaraju Veeriah, Cristina Naceur‐Lombardelli, Antonia Toncheva, Paulina Prymas, Andrew Rowan, Sophia Ward, Laura Cubitt, Foteini Athanasopoulou, Oriol Pich, Takahiro Karasaki, David A. Moore, Roberto Salgado, Emma Colliver, Carla Castignani, Michelle Dietzen, Ariana Huebner, Maise Al Bakir, Miljana Tanić, Thomas B.K. Watkins, Emilia L. Lim, Ali M. Al-Rashed, Danny Lang, James Clements, Daniel E. Cook, Rachel Rosenthal, Gareth A. Wilson, Alexander M. Frankell, Sophie de Carné Trécesson, Philip East, Nnennaya Kanu, Kevin Litchfield, Nicolai J. Birkbak, Allan Hackshaw, Stephan Beck, Peter Van Loo, Mariam Jamal‐Hanjani, Nicholas McGranahan, Charles Swanton, J.F. Lester, Amrita Bajaj, Apostolos Nakas, Azmina Sodha-Ramdeen, Keng Ang, Mohamad Tufail, Mohammed Fiyaz Chowdhry, Molly Scotland, Rebecca Boyles, Sridhar Rathinam, Claire Wilson, Domenic Marrone, Sean Dulloo, Dean A. Fennell, Gurdeep Matharu, Jacqui Shaw, Joan Riley, Lindsay Primrose, Ekaterini Boleti, Heather Cheyne, Mohammed S. Khalil, Shirley Richardson, Tracey Cruickshank, Gillian Price, Keith M. Kerr, Sarah Benafif, Kayleigh Gilbert, Babu Naidu, Akshay J. Patel, Aya Osman, Christer Lacson, Gerald Langman, Helen Shackleford, Madava Djearaman, Salma Kadiri, Gary Middleton, Angela Leek, Jack Davies Hodgkinson, Nicola Totten, Ángeles Montero, Elaine Smith, Eustace Fontaine, Felice Granato, Helen Doran, Juliette Novasio, Kendadai Rammohan, Leena Dennis Joseph, Rajesh Shah, Stuart Moss, Vijay Joshi, Philip Crosbie, Fábio Gomes, Kate Brown, Mathew Carter, Anshuman Chaturvedi, Lynsey Priest, Pedro Oliveira, Colin R. Lindsay, Fiona Blackhall, Matthew Krebs, Yvonne Summers, Alexandra Clipson, Jonathan Tugwood, Alastair Kerr, Dominic G. Rothwell, Elaine Kilgour, Caroline Dive, Hugo J.W.L. Aerts, Roland F. Schwarz, Tom L. Kaufmann, Zoltán Szállási, Judit Kisistók, Mateo Sokač, Miklós Dióssy, Abigail Bunkum, Alastair Magness, Angeliki Karamani, Benny Chain, Brittany Campbell, Chris Bailey, Christopher Abbosh, Clare E. Weeden, Claudia Lee, Corentin Richard, Crispin T. Hiley, David R. Pearce, Despoina Karagianni, Dhruva Biswas, Dina Levi, Elena Hoxha, Emma Nye, Eva Grönroos, Felip Gálvez-Cancino, Francisco Gimeno-Valiente, George Kassiotis, Georgia Stavrou, Gerasimos Mastrokalos, Hao-Ran Zhai, Helen L. Lowe, Ignacio Matos, Jacki Goldman, James L. Reading, Javier Herrero, Jayant K. Rane, Jérôme Nicod, Jie Min Lam, John A. Hartley, Karl S. Peggs, Katey S.S. Enfield, Kayalvizhi Selvaraju, Kevin W. Ng, Kezhong Chen, Krijn K. Dijkstra, Kristiana Grigoriadis, Krupa Thakkar, Leah Ensell, Mansi Shah, Marcos Vasquez Duran, Maria Litovchenko, Mariana Werner Sunderland, Michelle Leung, Mickael Escudero, Mihaela Angelova, Monica Sivakumar, Olga Chervova, Olivia Lucas, Othman Al‐Sawaf, Philip Hobson, Piotr Pawlik, Richard Stone, Robert B. Bentham, Robert E. Hynds, Roberto Vendramin, Sadegh Saghafinia, Saioa López, Samuel Gamble, Seng Kuong Anakin Ung, Sergio A. Quezada, Sharon Vanloo, Simone Zaccaria, Sonya Hessey, Stefan Boeing, Supreet Kaur Bola, Tamara Denner, Teresa Marafioti, Thanos P. Mourikis, Victoria J. Spanswick, Vittorio Barbè, Wei-Ting Lu, William Hill, Wing Kin Liu, Yin Wu, Yutaka Naito, Zoe Ramsden, Catarina Veiga, Gary Royle, Charles‐Antoine Collins‐Fekete, Francesco Fraioli, Paul Ashford, Tristan Clark, Martin Förster, Siow Ming Lee, Elaine Borg, Mary Falzon, Dionysis Papadatos-Pastos, James M. Wilson, Tanya Ahmad, Alexander James Procter, Asia Ahmed, Magali N. Taylor, Arjun Nair, David Lawrence, Davide Patrini, Neal Navani, Ricky M. Thakrar, Sam M. Janes, Emilie Martinoni Hoogenboom, Fleur Monk, James W. Holding, Junaid Choudhary, Kunal Bhakhri, Marco Scarci, Nikolaos Panagiotopoulos, Pat Gorman, Reena Khiroya, Robert Stephens, Yien Ning Sophia Wong, Steve Bandula, Abigail Sharp, Sean Smith, Nicole Gower, Harjot Kaur Dhanda, Kitty S. Chan, Camilla Pilotti, Rachel Leslie, Anca Grapa, Hanyun Zhang, Khalid AbdulJabbar, Xiaoxi Pan, Yinyin Yuan, David Chuter, Mairead MacKenzie, Serena Chee, Aiman Alzetani, Judith Cave, Lydia Scarlett, Jennifer Richards, Papawadee Ingram, Silvia Austin, Eric Lim, Paulo De Sousa, Simon Jordan, Alexandra Rice, Hilgardt Raubenheimer, Harshil Bhayani, Lyn Ambrose, Anand Devaraj, Hema Chavan, Sofina Begum, Silviu Buderi, Daniel Kaniu, Mpho Malima, Sarah Booth, Andrew G. Nicholson, Nadia Fernandes, Pratibha Shah, Chiara Proli, Madeleine Hewish, Sarah Danson, Michael Shackcloth, Lily Robinson, Peter Russell, Kevin G. Blyth, Craig Dick, John Le Quesne, Alan Kirk, Mo Asif, Rocco Bilancia, Nikos Kostoulas, Mathew Thomas
208Citations signalées, ce qui n’est pas une note de qualité
66Institutions déclarées
9Pays d’affiliation déclarés
Rattachement africain : gb, be, au, rs, dk, us, nl, de, hu.
Niveau de preuve : code pays fourni par la source.
Le résumé fourni par la source
Abstract Intratumour heterogeneity (ITH) fuels lung cancer evolution, which leads to immune evasion and resistance to therapy 1 . Here, using paired whole-exome and RNA sequencing data, we investigate intratumour transcriptomic diversity in 354 non-small cell lung cancer tumours from 347 out of the first 421 patients prospectively recruited into the TRACERx study 2,3 . Analyses of 947 tumour regions, representing both primary and metastatic disease, alongside 96 tumour-adjacent normal tissue samples implicate the transcriptome as a major source of phenotypic variation. Gene expression levels and ITH relate to patterns of positive and negative selection during tumour evolution. We observe frequent copy number-independent allele-specific expression that is linked to epigenomic dysfunction. Allele-specific expression can also result in genomic–transcriptomic parallel evolution, which converges on cancer gene disruption. We extract signatures of RNA single-base substitutions and link their aetiology to the activity of the RNA-editing enzymes ADAR and APOBEC3A, thereby revealing otherwise undetected ongoing APOBEC activity in tumours. Characterizing the transcriptomes of primary–metastatic tumour pairs, we combine multiple machine-learning approaches that leverage genomic and transcriptomic variables to link metastasis-seeding potential to the evolutionary context of mutations and increased proliferation within primary tumour regions. These results highlight the interplay between the genome and transcriptome in influencing ITH, lung cancer evolution and metastasis.
Ce résumé expose les affirmations des auteurs. BNTIC ne l’interprète pas comme une validation indépendante des résultats.
Le contrôle bibliographique ouvert
DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.
- Titre Crossref
- Genomic–transcriptomic evolution in lung cancer and metastasis
- Date Crossref
- 12/04/2023
- Éditeur
- Springer Science and Business Media LLC
- Type
- journal-article
Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude, et il ne compte pas comme une seconde source scientifique indépendante.
Les institutions déclarées
Une affiliation ne permet pas de déduire la nationalité d’un auteur.
Les sujets associés
Cancer Genomics and DiagnosticsRNA modifications and cancerCancer-related molecular mechanisms research