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N. Mcgranahan, R. Rosenthal, C. Hiley, Andrew Rowan, T. Watkins, Gareth A. Wilson, Nicolai J. Birkbak, S. Veeriah, P. van Loo, Javier Herrero, C. Swanton, Charles Mariam Selvaraju Seema Justyna Diana Joanne Letici Swanton Jamal-Hanjani Veeriah Shafi Czyzewska-Khan, C. Swanton, M. Jamal-Hanjani, S. Veeriah, S. Shafi, J. Czyzewska-Khan, Diana H. Johnson, J. Laycock, Leticia Bosshard-Carter, R. Rosenthal, Pat Gorman, R. Hynds, Gareth Wilson, Nicolai J. Birkbak, T. Watkins, N. Mcgranahan, S. Horswell, R. Mitter, M. Escudero, A. Stewart, P. van Loo, Andrew Rowan, Hang Xu, S. Turajlic, C. Hiley, C. Abbosh, J. Goldman, R. Stone, Tamara Denner, N. Matthews, G. Elgar, S. Ward, Marta Costa, Sharmin Begum, B. Phillimore, T. Chambers, E. Nye, S. Graça, M. Al Bakir, K. Joshi, A. Furness, Assma Ben Aissa, Y. Wong, A. Georgiou, S. Quezada, J. Hartley, H. Lowe, Javier Herrero, D. Lawrence, M. Hayward, N. Panagiotopoulos, S. Kolvekar, M. Falzon, E. Borg, T. Marafioti, C. Simeon, G. Hector, Amy Smith, M. Aranda, M. Novelli, D. Oukrif, S. Janes, R. Thakrar, Martin D. Forster, T. Ahmad, S. Lee, D. Papadatos-Pastos, D. Carnell, R. Mendes, J. George, N. Navani, Asia Ahmed, Magali N. Taylor, Junaid Choudhary, Y. Summers, R. Califano, Paul Taylor, R. Shah, P. Krysiak, K. Rammohan, E. Fontaine, R. Booton, M. Evison, P. Crosbie, Stuart Moss, F. Idries, L. Joseph, P. Bishop, Anshuman Chaturved, A. Quinn, H. Doran, A. Leek, P. Harrison, K. Moore, Rachael Waddington, Juliette Novasio, F. Blackhall, J. Rogan, E. Smith, C. Dive, J. Tugwood, G. Brady, D. Rothwell, Francesca Chemi, J. Pierce, Sakshi Gulati, B. Naidu, G. Langman, S. Trotter, M. Bellamy, H. Bancroft, A. Kerr, S. Kadiri, J. Webb, G. Middleton, M. Djearaman, D. Fennell, J. Shaw, J. Le Quesne, D. Moore, A. Nakas, S. Rathinam, W. Monteiro, H. Marshall, Louise Nelson, J. Bennett, Joan Riley, L. Primrose, L. Martinson, G. Anand, Sajid Khan, A. Amadi, M. Nicolson, K. Kerr, Shirley Palmer, H. Remmen, Joy Miller, K. Buchan, M. Chetty, L. Gomersall, Jason Lester, A. Edwards, Fiona Morgan, Haydn Adams, H. Davies, M. Kornaszewska, R. Attanoos, S. Lock, A. Verjee, M. Mackenzie, M. Wilcox, Harriet Bell, A. Hackshaw, Y. Ngai, Sean Smith, N. Gower, C. Ottensmeier, S. Chee, Benjamin Johnson, A. Alzetani, E. Shaw, Eric Lim, P. De Sousa, M. T. Barbosa, A. Bowman, S. Jordan, A. Rice, H. Raubenheimer, C. Proli, M. E. Cufari, J. Ronquillo, Angela Kwayie, H. Bhayani, Morag Hamilton, Yusura Bakar, N. Mensah, L. Ambrose, A. Devaraj, S. Buderi, J. Finch, L. Azcárate, Hema Chavan, Sophie Green, Hillaria Mashinga, A. Nicholson, K. Lau, M. Sheaff, Peter D. Schmid, J. Conibear, V. Ezhil, Babikir Ismail, Melanie Irvin-sellers, V. Prakash, P. Russell, T. Light, T. Horey, S. Danson, J. Bury, John Edwards, Jennifer Hill, S. Matthews, Yota Kitsanta, K. Suvarna, P. Fisher, Allah Dino Keerio, M. Shackcloth, J. Gosney, P. Postmus, Sarah L. Feeney, Julius Asante-Siaw, H. Aerts, S. Dentro, C. Dessimoz
1161 30. 11. 2017.

Allele-Specific HLA Loss and Immune Escape in Lung Cancer Evolution

Summary Immune evasion is a hallmark of cancer. Losing the ability to present neoantigens through human leukocyte antigen (HLA) loss may facilitate immune evasion. However, the polymorphic nature of the locus has precluded accurate HLA copy-number analysis. Here, we present loss of heterozygosity in human leukocyte antigen (LOHHLA), a computational tool to determine HLA allele-specific copy number from sequencing data. Using LOHHLA, we find that HLA LOH occurs in 40% of non-small-cell lung cancers (NSCLCs) and is associated with a high subclonal neoantigen burden, APOBEC-mediated mutagenesis, upregulation of cytolytic activity, and PD-L1 positivity. The focal nature of HLA LOH alterations, their subclonal frequencies, enrichment in metastatic sites, and occurrence as parallel events suggests that HLA LOH is an immune escape mechanism that is subject to strong microenvironmental selection pressures later in tumor evolution. Characterizing HLA LOH with LOHHLA refines neoantigen prediction and may have implications for our understanding of resistance mechanisms and immunotherapeutic approaches targeting neoantigens. Video Abstract


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