Using DNA sequencing data to quantify T cell fraction and therapy response

免疫疗法 外显子组测序 免疫系统 计算生物学 DNA 生物 体细胞 T细胞 癌症研究 外显子组 DNA测序 细胞 基因 免疫学 突变 遗传学
作者
Robert B. Bentham,Kevin Litchfield,Thomas B.K. Watkins,Emilia L. Lim,Rachel Rosenthal,Carlos Martínez‐Ruiz,Crispin T. Hiley,Maise Al Bakir,Roberto Salgado,David A. Moore,Mariam Jamal‐Hanjani,Nicolai J. Birkbak,Mickael Escudero,Grant D. Stewart,Andrew Rowan,Jacki Goldman,Peter Van Loo,Richard Stone,Tamara Denner,Emma Nye,Martin Hayward,Stefan Boeing,Maria Greco,Jérôme Nicod,Clare Puttick,Katey S.S. Enfield,Emma Colliver,Brittany Campbell,Alexander M. Frankell,Daniel E. Cook,Mihaela Angelova,Alastair Magness,Chris Bailey,Antonia Toncheva,Krijn K. Dijkstra,Judit Kisistók,Mateo Sokač,Oriol Pich,Jonas Demeulemeester,Elizabeth Larose Cadieux,Carla Castignani,Krupa Thakkar,Hongchang Fu,Takahiro Karasaki,Othman Al‐Sawaf,Mark S. Hill,Christopher Abbosh,Yin Wu,Selvaraju Veeriah,Robert E. Hynds,Andrew Georgiou,Mariana Werner Sunderland,James L. Reading,Sergio A. Quezada,Karl S. Peggs,Teresa Marafioti,John A. Hartley,Helen L. Lowe,Leah Ensell,Victoria J. Spanswick,Angeliki Karamani,Dhruva Biswas,Stephan Beck,Olga Chervova,Miljana Tanić,Ariana Huebner,Michelle Dietzen,James R. Black,Cristina Naceur‐Lombardelli,Mita Afroza Akther,Hao-Ran Zhai,Nnennaya Kanu,Simranpreet Summan,Francisco Gimeno-Valiente,Kezhong Chen,Elizabeth Manzano,Supreet Kaur Bola,Ehsan Ghorani,Marc Robert de Massy,Elena Hoxha,Emine Hatipoglu,Benny Chain,David R. Pearce,Javier Herrero,Simone Zaccaria,J.F. Lester,Fiona J. E. Morgan,Malgorzata Kornaszewska,Richard Attanoos,Haydn Adams,Helen Davies,Jacqui Shaw,Joan Riley,Lindsay Primrose,Dean A. Fennell,Apostolos Nakas,Sridhar Rathinam,Rachel Plummer,Rebecca Boyles,Mohamad Tufail,Amrita Bajaj,Jan Brožík,Keng Ang,Mohammed Fiyaz Chowdhry,William Monteiro,Hilary Marshall,Alan G. Dawson,Sara Busacca,Domenic Marrone,Claire Smith,Girija Anand,Sajid Khan,Gillian Price,Mohammed S. Khalil,Keith M. Kerr,Shirley Richardson,Heather Cheyne,J. Richard Miller,Keith Buchan,Mahendran Chetty,Sylvie Dubois-Marshall,Sara Lock,Kayleigh Gilbert,Babu Naidu,Gerald Langman,Hollie Bancroft,Salma Kadiri,Gary Middleton,Madava Djearaman,Aya Osman,Helen Shackleford,Akshay J. Patel,Angela Leek,Nicola Totten,Jack Davies Hodgkinson,Jane Rogan,Katrina Moore,Rachael Waddington,Raffaele Califano,Rajesh Shah,Piotr Krysiak,Kendadai Rammohan,Eustace Fontaine,Richard Booton,Matthew Evison,Stuart Moss,Juliette Novasio,Leena Dennis Joseph,Paul N. Bishop,Anshuman Chaturvedi,Helen Doran,Felice Granato,Vijay Joshi,Elaine Smith,Ángeles Montero,Philip Crosbie,Fiona Blackhall,Lynsey Priest,Matthew Krebs,Caroline Dive,Dominic G. Rothwell,Alastair Kerr,Elaine Kilgour,Katie Baker,Mathew Carter,Colin R. Lindsay,Fábio Gomes,Jonathan Tugwood,Jackie Pierce,Alexandra Clipson,Roland F. Schwarz,Tom L. Kaufmann,Matthew R. Huska,Zoltán Szállási,István Csabai,Miklós Dióssy,Hugo J.W.L. Aerts,Charles Fekete,Gary Royle,Catarina Veiga,Marcin Skrzypski,David Lawrence,Martin Hayward,Nikolaos Panagiotopoulos,Robert George,Davide Patrini,Mary Falzon,Elaine Borg,Reena Khiroya,Asia Ahmed,Magali N. Taylor,Junaid Choudhary,Sam M. Janes,Martin Förster,Tanya Ahmad,Siow Ming Lee,Neal Navani,Dionysis Papadatos-Pastos,Marco Scarci,Pat Gorman,Elisa Bertoja,Robert Stephens,Emilie Martinoni Hoogenboom,James W. Holding,Steve Bandula,Ricky M. Thakrar,Radhi Anand,Kayalvizhi Selvaraju,James M. Wilson,Sonya Hessey,Paul Ashford,Mansi Shah,Marcos Vasquez Duran,Mairead MacKenzie,Maggie Wilcox,Allan Hackshaw,Yenting Ngai,Abigail Sharp,Cristina Rodrigues,Oliver Pressey,Sean Smith,Nicole Gower,Harjot Kaur Dhanda,Kitty S. Chan,Sonal Chakraborty,Christian H. Ottensmeier,Serena Chee,Diana Johnson,Aiman Alzetani,Judith Cave,Lydia Scarlett,Emily Shaw,Eric Lim,Paulo De Sousa,Simon Jordan,Alexandra Rice,Hilgardt Raubenheimer,Harshil Bhayani,Morag Hamilton,Lyn Ambrose,Anand Devaraj,Hema Chavan,Sofina Begum,Silviu Buderi,Daniel Kaniu,Mpho Malima,Sarah Booth,Andrew G. Nicholson,Nadia Fernandes,Christopher Deeley,Pratibha Shah,Chiara Proli,Kelvin Lau,Michael Sheaff,Peter Schmid,Louise Lim,John Conibear,Madeleine Hewish,Sarah Danson,Jonathan Bury,John Edwards,Jennifer Hill,Sue Matthews,Yota Kitsanta,Jagan Rao,Sara Tenconi,Laura Socci,Kim Suvarna,Faith Kibutu,Patricia Fisher,Robin Young,Joann Barker,Fiona Taylor,Kirsty Lloyd,Michael Shackcloth,Julius Asante-Siaw,John R. Gosney,Teresa Light,Tracey Horey,Peter Russell,Dionysis Papadatos-Pastos,Kevin G. Blyth,Craig Dick,Andrew Kidd,Allan D. Kirk,Mo Asif,John Butler,Rocco Bilancia,Nikos Kostoulas,Mathew Thomas,Gareth A. Wilson,Charles Swanton,Nicholas McGranahan
出处
期刊:Nature [Springer Nature]
卷期号:597 (7877): 555-560 被引量:52
标识
DOI:10.1038/s41586-021-03894-5
摘要

The immune microenvironment influences tumour evolution and can be both prognostic and predict response to immunotherapy1,2. However, measurements of tumour infiltrating lymphocytes (TILs) are limited by a shortage of appropriate data. Whole-exome sequencing (WES) of DNA is frequently performed to calculate tumour mutational burden and identify actionable mutations. Here we develop T cell exome TREC tool (T cell ExTRECT), a method for estimation of T cell fraction from WES samples using a signal from T cell receptor excision circle (TREC) loss during V(D)J recombination of the T cell receptor-α gene (TCRA (also known as TRA)). TCRA T cell fraction correlates with orthogonal TIL estimates and is agnostic to sample type. Blood TCRA T cell fraction is higher in females than in males and correlates with both tumour immune infiltrate and presence of bacterial sequencing reads. Tumour TCRA T cell fraction is prognostic in lung adenocarcinoma. Using a meta-analysis of tumours treated with immunotherapy, we show that tumour TCRA T cell fraction predicts immunotherapy response, providing value beyond measuring tumour mutational burden. Applying T cell ExTRECT to a multi-sample pan-cancer cohort reveals a high diversity of the degree of immune infiltration within tumours. Subclonal loss of 12q24.31–32, encompassing SPPL3, is associated with reduced TCRA T cell fraction. T cell ExTRECT provides a cost-effective technique to characterize immune infiltrate alongside somatic changes. A robust, cost-effective technique based on whole-exome sequencing data can be used to characterize immune infiltrates, relate the extent of these infiltrates to somatic changes in tumours, and enables prediction of tumour responses to immune checkpoint inhibition therapy.
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