Circular extrachromosomal DNA promotes tumor heterogeneity in high-risk medulloblastoma

被引:0
|
作者
Owen S. Chapman
Jens Luebeck
Sunita Sridhar
Ivy Tsz-Lo Wong
Deobrat Dixit
Shanqing Wang
Gino Prasad
Utkrisht Rajkumar
Meghana S. Pagadala
Jon D. Larson
Britney Jiayu He
King L. Hung
Joshua T. Lange
Siavash R. Dehkordi
Sahaana Chandran
Miriam Adam
Ling Morgan
Sameena Wani
Ashutosh Tiwari
Caitlin Guccione
Yingxi Lin
Aditi Dutta
Yan Yuen Lo
Edwin Juarez
James T. Robinson
Andrey Korshunov
John-Edward A. Michaels
Yoon-Jae Cho
Denise M. Malicki
Nicole G. Coufal
Michael L. Levy
Charlotte Hobbs
Richard H. Scheuermann
John R. Crawford
Scott L. Pomeroy
Jeremy N. Rich
Xinlian Zhang
Howard Y. Chang
Jesse R. Dixon
Anindya Bagchi
Aniruddha J. Deshpande
Hannah Carter
Ernest Fraenkel
Paul S. Mischel
Robert J. Wechsler-Reya
Vineet Bafna
Jill P. Mesirov
Lukas Chavez
机构
[1] University of California San Diego,Bioinformatics and Systems Biology Graduate Program
[2] University of California San Diego,Department of Medicine
[3] Sanford Burnham Prebys Medical Discovery Institute,Department of Computer Science and Engineering
[4] University of California San Diego,Department of Pediatrics
[5] UC San Diego and Rady Children’s Hospital,Department of Pathology
[6] Stanford University School of Medicine,Sarafan ChEM
[7] Stanford University,H
[8] Columbia University,Department of Neurology and Herbert Irving Comprehensive Cancer Center
[9] University of California San Diego,Medical Scientist Training Program
[10] University of California San Diego,Biomedical Sciences Graduate Program
[11] Stanford University,Center for Personal Dynamic Regulomes
[12] Salk Institute for Biological Studies,Department of Biological Engineering
[13] Massachusetts Institute of Technology,Rady Children’s Institute for Genomic Medicine
[14] Rady Children’s Hospital and Healthcare Center,Papé Pediatric Research Institute, Department of Pediatrics and Knight Cancer Insitute
[15] Clinical Cooperation Unit Neuropathology (B300),Division of Pathology
[16] German Cancer Research Center (DKFZ),Department of Pathology
[17] German Cancer Consortium (DKTK),Department of Pediatrics
[18] and National Center for Tumor Diseases (NCT),Department of Neurology
[19] Im Neuenheimer Feld 280,Department of Neurology
[20] Oregon Health and Sciences University,Division of Biostatistics and Bioinformatics, Department of Family Medicine and Public Health
[21] UC San Diego and Rady Children’s Hospital,Department of Genetics
[22] J. Craig Venter Institute,Howard Hughes Medical Institute
[23] University of California San Diego,Moores Cancer Center
[24] University of California Irvine and Children’s Hospital Orange County,undefined
[25] Eli and Edythe Broad Institute of MIT and Harvard,undefined
[26] Boston Children’s Hospital,undefined
[27] Harvard Medical School,undefined
[28] UPMC Hillman Cancer Center,undefined
[29] University of Pittsburgh,undefined
[30] University of California San Diego,undefined
[31] Stanford University,undefined
[32] Stanford University School of Medicine,undefined
[33] University of California San Diego,undefined
来源
Nature Genetics | 2023年 / 55卷
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摘要
Circular extrachromosomal DNA (ecDNA) in patient tumors is an important driver of oncogenic gene expression, evolution of drug resistance and poor patient outcomes. Applying computational methods for the detection and reconstruction of ecDNA across a retrospective cohort of 481 medulloblastoma tumors from 465 patients, we identify circular ecDNA in 82 patients (18%). Patients with ecDNA-positive medulloblastoma were more than twice as likely to relapse and three times as likely to die within 5 years of diagnosis. A subset of tumors harbored multiple ecDNA lineages, each containing distinct amplified oncogenes. Multimodal sequencing, imaging and CRISPR inhibition experiments in medulloblastoma models reveal intratumoral heterogeneity of ecDNA copy number per cell and frequent putative ‘enhancer rewiring’ events on ecDNA. This study reveals the frequency and diversity of ecDNA in medulloblastoma, stratified into molecular subgroups, and suggests copy number heterogeneity and enhancer rewiring as oncogenic features of ecDNA.
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页码:2189 / 2199
页数:10
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