Using evolutionary constraint to define novel candidate driver genes in medulloblastoma

Ananya Roy,Sharadha Sakthikumar,Sergey V. Kozyrev,Jessika Nordin,Raphaela Pensch,Suvi Mäkeläinen,Mats E. Pettersson,Elinor K. Karlsson,Kerstin Lindblad‐Toh,Karin Forsberg-Nilsson, Gregory Andrews,Joel Armstrong,Matteo Bianchi,Bruce W. Birren,Kevin R. Bredemeyer,Ana M. Breit,Matthew J. Christmas,Hiram Clawson,Joana Damas,Federica Di Palma,Mark Diekhans,Michael X. Dong,Eduardo Eizirik,Kaili Fan,Cornelia Fanter,Nicole M. Foley,Karin Forsberg-Nilsson,Carlos J. Garcia,John Gatesy,Steven Gazal,Diane P. Genereux,Linda Goodman,Jenna Grimshaw,Michaela K. Halsey,Andrew Harris,Glenn Hickey,Michael Hiller,Allyson G. Hindle,Robert Hubley,Graham M. Hughes,Jeremy Johnson,David Juan,Irene M. Kaplow,Elinor K. Karlsson,Kathleen C. Keough,Bogdan Kirilenko,Klaus‐Peter Koepfli,Jennifer M. Korstian,Amanda Kowalczyk,Sergey V. Kozyrev,Alyssa J. Lawler,Colleen Lawless, Thomas Lehmann,Danielle L. Levesque,Harris A. Lewin,Xue Li,Abigail Lind,Kerstin Lindblad‐Toh, Ava Mackay-Smith,Voichita D. Marinescu,Tomàs Marquès-Bonet,Victor C. Mason,Jennifer R. S. Meadows,Wynn K. Meyer,Jill E. Moore,Lucas R. Moreira,Diana D. Moreno-Santillán,Kathleen M. Morrill,Gerard Muntané,William J. Murphy,Arcadi Navarro,Martin Nweeia, Sylvia Ortmann,Austin Osmanski,Benedict Paten,Nicole S. Paulat,Andreas R. Pfenning,BaDoi N. Phan,Katherine S. Pollard,Henry E. Pratt,David A. Ray,Steven K. Reilly,Jeb Rosen,Irina Ruf,Louise Ryan,Oliver A. Ryder,Pardis C. Sabeti,Daniel E. Schäffer, Aitor Serres,Beth Shapiro,Arian F. A. Smit,Mark S. Springer,Chaitanya Srinivasan,Cynthia Steiner,Jessica M. Storer, Kevin A. Sullivan,Patrick F. Sullivan,Elisabeth Sundström,Megan A. Supple,Ross Swofford, Joy-El Talbot,Emma C. Teeling,Jason Turner-Maier,Alejandro Valenzuela,Franziska Wagner,Ola Wallerman,Chao Wang, Juehan Wang,Zhiping Weng,Aryn P. Wilder,Morgan Wirthlin,James R. Xue,Xiaomeng Zhang

Proceedings of the National Academy of Sciences of the United States of America(2023)

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摘要
Current knowledge of cancer genomics remains biased against noncoding mutations. To systematically search for regulatory noncoding mutations, we assessed mutations in conserved positions in the genome under the assumption that these are more likely to be functional than mutations in positions with low conservation. To this end, we use whole-genome sequencing data from the International Cancer Genome Consortium and combined it with evolutionary constraint inferred from 240 mammals, to identify genes enriched in noncoding constraint mutations (NCCMs), mutations likely to be regulatory in nature. We compare medulloblastoma (MB), which is malignant, to pilocytic astrocytoma (PA), a primarily benign tumor, and find highly different NCCM frequencies between the two, in agreement with the fact that malignant cancers tend to have more mutations. In PA, a high NCCM frequency only affects the BRAF locus, which is the most commonly mutated gene in PA. In contrast, in MB, >500 genes have high levels of NCCMs. Intriguingly, several loci with NCCMs in MB are associated with different ages of onset, such as the HOXB cluster in young MB patients. In adult patients, NCCMs occurred in, e.g., the WASF-2/AHDC1/FGR locus. One of these NCCMs led to increased expression of the SRC kinase FGR and augmented responsiveness of MB cells to dasatinib, a SRC kinase inhibitor. Our analysis thus points to different molecular pathways in different patient groups. These newly identified putative candidate driver mutations may aid in patient stratification in MB and could be valuable for future selection of personalized treatment options.
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关键词
medulloblastoma,novel candidate driver genes,evolutionary constraint
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