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Fanconi Anemia Pathway Deficiency Drives Copy Number Variation in Squamous Cell Carcinomas

Andrew L.H. Webster, Mathijs A. Sanders, Krupa Patel, Ralf Dietrich, Raymond J. Noonan, Francis P. Lach, Ryan R. White, Audrey Goldfarb, Kevin Hadi, Matthew M. Edwards, Frank X. Donovan, Moonjung Jung, Sunandini Sridhar, View ORCID ProfileOlivier Fedrigo, Huasong Tian, Joel Rosiene, Thomas Heineman, Jennifer A. Kennedy, Lorenzo Bean, Ozgur Rosti, Rebecca Tryon, Ashlyn-Maree Gonzalez, Allana Rosenberg, Ji-Dung Luo, Thomas Carrol, Eunike Velleuer, Jeff C. Rastatter, Susanne I. Wells, Jordi Surrallés, Grover Bagby, Margaret L. MacMillan, John E. Wagner, Maria Cancio, Farid Boulad, Theresa Scognamiglio, Roger Vaughan, Amnon Koren, Marcin Imielinski, Settara Chandrasekharappa, Arleen D. Auerbach, Bhuvanesh Singh, David I. Kutler, Peter J. Campbell, View ORCID ProfileAgata Smogorzewska
doi: https://doi.org/10.1101/2021.08.14.456365
Andrew L.H. Webster
1Laboratory of Genome Maintenance, Rockefeller University, New York, NY, USA
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Mathijs A. Sanders
2Cancer, Ageing and Somatic Mutation (CASM), Wellcome Sanger Institute, Hinxton, UK
3Department of Hematology, Erasmus MC Cancer Institute, Rotterdam, The Netherlands
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Krupa Patel
1Laboratory of Genome Maintenance, Rockefeller University, New York, NY, USA
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Ralf Dietrich
4Deutsche Fanconi-Anämie-Hilfe e.V, Böckenweg 4, 59427 Unna-Siddinghausen, Germany
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Raymond J. Noonan
1Laboratory of Genome Maintenance, Rockefeller University, New York, NY, USA
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Francis P. Lach
1Laboratory of Genome Maintenance, Rockefeller University, New York, NY, USA
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Ryan R. White
1Laboratory of Genome Maintenance, Rockefeller University, New York, NY, USA
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Audrey Goldfarb
1Laboratory of Genome Maintenance, Rockefeller University, New York, NY, USA
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Kevin Hadi
5Department of Pathology & Laboratory Medicine, Weill Cornell Medicine and New York Genome Center, New York, NY, USA
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Matthew M. Edwards
6Department of Molecular Biology and Genetics, Cornell University, Ithaca, NY, USA
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Frank X. Donovan
7Cancer Genetics and Comparative Genomics Branch, National Human Genome Research Institute, National Institutes of Health, Bethesda, MD, USA
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Moonjung Jung
1Laboratory of Genome Maintenance, Rockefeller University, New York, NY, USA
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Sunandini Sridhar
1Laboratory of Genome Maintenance, Rockefeller University, New York, NY, USA
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Olivier Fedrigo
8Vertebrate Genomes Laboratory, Rockefeller University, NY, USA
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Huasong Tian
5Department of Pathology & Laboratory Medicine, Weill Cornell Medicine and New York Genome Center, New York, NY, USA
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Joel Rosiene
5Department of Pathology & Laboratory Medicine, Weill Cornell Medicine and New York Genome Center, New York, NY, USA
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Thomas Heineman
1Laboratory of Genome Maintenance, Rockefeller University, New York, NY, USA
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Jennifer A. Kennedy
1Laboratory of Genome Maintenance, Rockefeller University, New York, NY, USA
9Department of Medicine, Memorial Sloan Kettering Cancer Center, New York, NY
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Lorenzo Bean
1Laboratory of Genome Maintenance, Rockefeller University, New York, NY, USA
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Ozgur Rosti
1Laboratory of Genome Maintenance, Rockefeller University, New York, NY, USA
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Rebecca Tryon
10Department of Pediatrics, University of Minnesota, Minneapolis, MN, USA
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Ashlyn-Maree Gonzalez
1Laboratory of Genome Maintenance, Rockefeller University, New York, NY, USA
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Allana Rosenberg
1Laboratory of Genome Maintenance, Rockefeller University, New York, NY, USA
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Ji-Dung Luo
11Bioinformatics Resource Center, Rockefeller University, NY, USA
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Thomas Carrol
11Bioinformatics Resource Center, Rockefeller University, NY, USA
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Eunike Velleuer
12Institute for Pathology, Department for Cytopathology, University Hospital of Düsseldorf, Moorenstr. 5, Düsseldorf, 40225; Germany and Children’s Hospital Moenchengladbach Neuwerk, Germany
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Jeff C. Rastatter
13Division of Pediatric Otolaryngology-Head and Neck Surgery, Ann & Robert H. Lurie Children’s Hospital of Chicago and Department of Otolaryngology-Head and Neck Surgery, Feinberg School of Medicine, Northwestern University, Chicago, Illinois, USA
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Susanne I. Wells
14Division of Oncology, Cincinnati Children’s Hospital Medical Center and Department of Pediatrics, University of Cincinnati College of Medicine, Cincinnati, OH 45267, USA
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Jordi Surrallés
15Genomic Instability and DNA Repair Syndromes Group and Joint Research Unit on Genomic Medicine UAB-Sant Pau Biomedical Research Institute (IIB Sant Pau), Institut de Recerca Hospital de la Santa Creu i Sant Pau-IIB Sant Pau, Barcelona, Spain
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Grover Bagby
16Departments of Medicine and Molecular and Medical Genetics, Division of Hematology and Medical Oncology, Knight Cancer Institute, Oregon Health & Science University, Portland, Oregon, USA
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Margaret L. MacMillan
10Department of Pediatrics, University of Minnesota, Minneapolis, MN, USA
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John E. Wagner
10Department of Pediatrics, University of Minnesota, Minneapolis, MN, USA
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Maria Cancio
17Department of Pediatrics, Memorial Sloan Kettering Cancer Center, New York, New York
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Farid Boulad
17Department of Pediatrics, Memorial Sloan Kettering Cancer Center, New York, New York
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Theresa Scognamiglio
18Department of Pathology, Weill Cornell Medicine, New York, New York
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Roger Vaughan
19Department of Biostatistics, The Rockefeller University, New York, NY, USA
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Amnon Koren
6Department of Molecular Biology and Genetics, Cornell University, Ithaca, NY, USA
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Marcin Imielinski
5Department of Pathology & Laboratory Medicine, Weill Cornell Medicine and New York Genome Center, New York, NY, USA
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Settara Chandrasekharappa
7Cancer Genetics and Comparative Genomics Branch, National Human Genome Research Institute, National Institutes of Health, Bethesda, MD, USA
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Arleen D. Auerbach
20Human Genetics and Hematology Program, The Rockefeller University, New York, NY, USA
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Bhuvanesh Singh
21Department of Surgery, Memorial Sloan Kettering Cancer Center, New York, NY, USA
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David I. Kutler
22Department of Otolaryngology-Head and Neck Surgery, Weill Cornell Medical College, New York, New York, USA
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Peter J. Campbell
2Cancer, Ageing and Somatic Mutation (CASM), Wellcome Sanger Institute, Hinxton, UK
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Agata Smogorzewska
1Laboratory of Genome Maintenance, Rockefeller University, New York, NY, USA
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  • ORCID record for Agata Smogorzewska
  • For correspondence: asmogorzewska@rockefeller.edu
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Abstract

Fanconi anemia (FA), a model syndrome of genome instability, is caused by a deficiency in DNA interstrand crosslink (ICL) repair resulting in chromosome breakage1–3. The FA repair pathway comprises at least 22 FANC proteins including BRCA1 and BRCA24–6, and protects against carcinogenic endogenous and exogenous aldehydes7–10. Individuals with FA are hundreds to thousands-fold more likely to develop head and neck (HNSCC), esophageal and anogenital squamous cell carcinomas (SCCs) with a median onset age of 31 years11. The aggressive nature of these tumors and poor patient tolerance of platinum and radiation-based therapy have been associated with short survival in FA11–16. Molecular studies of SCCs from individuals with FA (FA SCCs) have been limited, and it is unclear how they relate to sporadic HNSCCs primarily driven by tobacco and alcohol exposure or human papillomavirus (HPV) infection17. Here, by sequencing FA SCCs, we demonstrate that the primary genomic signature of FA-deficiency is the presence of a high number of structural variants (SVs). SVs are enriched for small deletions, unbalanced translocations, and fold-back inversions that arise in the context of TP53 loss. The SV breakpoints preferentially localize to early replicating regions, common fragile sites, tandem repeats, and SINE elements. SVs are often connected forming complex rearrangements. Resultant genomic instability underlies elevated copy number alteration (CNA) rates of key HNSCC-associated genes, including PIK3CA, MYC, CSMD1, PTPRD, YAP1, MXD4, and EGFR. In contrast to sporadic HNSCC, we find no evidence of HPV infection in FA HNSCC, although positive cases were identified in gynecologic tumors. A murine allograft model of FA pathway-deficient SCC was enriched in SVs, exhibited dramatic tumor growth advantage, more rapid epithelial-to-mesenchymal transition (EMT), and enhanced autonomous inflammatory signaling when compared to an FA pathway-proficient model. In light of the protective role of the FA pathway against SV formation uncovered here, and recent findings of FA pathway insufficiency in the setting of increased formaldehyde load resulting in hematopoietic stem cell failure and carcinogenesis18–20, we propose that high copy-number instability in sporadic HNSCC may result from functional overload of the FA pathway by endogenous and exogenous DNA crosslinking agents. Our work lays the foundation for improved FA patient treatment and demonstrates that FA SCC is a powerful model to study tumorigenesis resulting from DNA crosslinking damage.

Competing Interest Statement

Rocket Pharmaceuticals provided research funding and partial salary support to A.S. for an unrelated project. P.J.C. is a founder, director and consultant for Mu Genomics Ltd. B.S. is a co-inventor of intellectual property related to DCN1 small molecule inhibitors licensed by MSK to Cinsanso. He has rights to receive royalty income as a result of this arrangement. MSK has financial interests related to this intellectual property and Cinsanso as a result of this arrangement.

Copyright 
The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. It is made available under a CC-BY-NC-ND 4.0 International license.
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Fanconi Anemia Pathway Deficiency Drives Copy Number Variation in Squamous Cell Carcinomas
Andrew L.H. Webster, Mathijs A. Sanders, Krupa Patel, Ralf Dietrich, Raymond J. Noonan, Francis P. Lach, Ryan R. White, Audrey Goldfarb, Kevin Hadi, Matthew M. Edwards, Frank X. Donovan, Moonjung Jung, Sunandini Sridhar, Olivier Fedrigo, Huasong Tian, Joel Rosiene, Thomas Heineman, Jennifer A. Kennedy, Lorenzo Bean, Ozgur Rosti, Rebecca Tryon, Ashlyn-Maree Gonzalez, Allana Rosenberg, Ji-Dung Luo, Thomas Carrol, Eunike Velleuer, Jeff C. Rastatter, Susanne I. Wells, Jordi Surrallés, Grover Bagby, Margaret L. MacMillan, John E. Wagner, Maria Cancio, Farid Boulad, Theresa Scognamiglio, Roger Vaughan, Amnon Koren, Marcin Imielinski, Settara Chandrasekharappa, Arleen D. Auerbach, Bhuvanesh Singh, David I. Kutler, Peter J. Campbell, Agata Smogorzewska
bioRxiv 2021.08.14.456365; doi: https://doi.org/10.1101/2021.08.14.456365
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Fanconi Anemia Pathway Deficiency Drives Copy Number Variation in Squamous Cell Carcinomas
Andrew L.H. Webster, Mathijs A. Sanders, Krupa Patel, Ralf Dietrich, Raymond J. Noonan, Francis P. Lach, Ryan R. White, Audrey Goldfarb, Kevin Hadi, Matthew M. Edwards, Frank X. Donovan, Moonjung Jung, Sunandini Sridhar, Olivier Fedrigo, Huasong Tian, Joel Rosiene, Thomas Heineman, Jennifer A. Kennedy, Lorenzo Bean, Ozgur Rosti, Rebecca Tryon, Ashlyn-Maree Gonzalez, Allana Rosenberg, Ji-Dung Luo, Thomas Carrol, Eunike Velleuer, Jeff C. Rastatter, Susanne I. Wells, Jordi Surrallés, Grover Bagby, Margaret L. MacMillan, John E. Wagner, Maria Cancio, Farid Boulad, Theresa Scognamiglio, Roger Vaughan, Amnon Koren, Marcin Imielinski, Settara Chandrasekharappa, Arleen D. Auerbach, Bhuvanesh Singh, David I. Kutler, Peter J. Campbell, Agata Smogorzewska
bioRxiv 2021.08.14.456365; doi: https://doi.org/10.1101/2021.08.14.456365

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