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Genomic and Epigenomic Landscapes of Adult De Novo Acute Myeloid Leukemia

Authors
T Ley,Christopher Miller
Li Ding,Benjamin Raphael,Andrew Mungall,Gordon Robertson,Katherine Hoadley,Timothy Triche,Peter Laird,Jack Baty,Lucinda Fulton,Robert Fulton,Sharon Heath,Joelle Kalicki-Veizer,Cyriac Kandoth,Jeffery Klco,Daniel Koboldt,Krishna Kanchi,Shashikant Kulkarni,Tamara Lamprecht,David Larson,Ge Lin,Charles Lu,Michael McLellan,Joshua McMichael,Jacqueline Payton,Heather Schmidt,David Spencer,Michael Tomasson,John Wallis,Lukas Wartman,Mark Watson,John Welch,Michael Wendl,Adrian Ally,Miruna Balasundaram,İnanç Birol,Yaron Butterfield,Readman Chiu,Andy Chu,Eric Chuah,Hye Chun,Richard Corbett,Noreen Dhalla,Ranabir Guin,Anyuan He,Carrie Hirst,Martin Hirst,Robert Holt,Steven Jones,Aly Karsan,Darlene Lee,Haiyan Li,Marco Marra,Michael Mayo,Richard Moore,Karen Mungall,Jeremy Parker,Erin Pleasance,Patrick Plettner,Jacquie Schein,Dominik Stoll,Lucas Swanson,Angela Tam,Nina Thiessen,Richard Varhol,Natasja Wye,Yongjun Zhao,Stacey Gabriel,Gad Getz,Carrie Sougnez,Lihua Zou,Mark Leiserson,Fabio Vandin,Hsin Wu,Frederick Applebaum,Stephen Baylin,Rehan Akbani,Bradley Broom,Ken Chen,Thomas Motter,Nguyễn Khanh,John Weinstein,Nianziang Zhang,Martin Ferguson,Christopher Adams,Aaron Black,Jay Bowen,Julie Gastier‐Foster,Thomas Grossman,Tara Lichtenberg,Lisa Wise,Tanja Davidsen,John Demchok,Kenna Shaw,Margi Sheth,Heidi Sofia,Liming Yang,James Downing,Greg Eley,Shelley Alonso,Brenda Ayala,Julien Baboud,Mark Backus,Sean Barletta,Dominique Berton,Anna Chu,Stanley Girshik,Mark Jensen,A Kahn,Prachi Kothiyal,Matthew Nicholls,Todd Pihl,David Pot,Rohini Raman,Rashmi Sanbhadti,Eric Snyder,Deepak Srinivasan,Jessica Walton,Yunhu Wan,Zhining Wang,Jean‐Pierre Issa,Michelle Beau,Martin Carroll,Hagop Kantarjian,Steven Kornblau,Arnoud Boot,Phillip Lai,Hui Shen,David Berg,Daniel Weisenberger,Daniel Link,Matthew Walter,Bradley Ozenberger,Elaine Mardis,Peter Westervelt,Timothy Graubert,John DiPersio,Richard Wilson,Tim Triche,Anbang He
+139 authors
,Khanh Nguyen
Published
May 2, 2013
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Abstract

Many mutations that contribute to the pathogenesis of acute myeloid leukemia (AML) are undefined. The relationships between patterns of mutations and epigenetic phenotypes are not yet clear.We analyzed the genomes of 200 clinically annotated adult cases of de novo AML, using either whole-genome sequencing (50 cases) or whole-exome sequencing (150 cases), along with RNA and microRNA sequencing and DNA-methylation analysis.AML genomes have fewer mutations than most other adult cancers, with an average of only 13 mutations found in genes. Of these, an average of 5 are in genes that are recurrently mutated in AML. A total of 23 genes were significantly mutated, and another 237 were mutated in two or more samples. Nearly all samples had at least 1 nonsynonymous mutation in one of nine categories of genes that are almost certainly relevant for pathogenesis, including transcription-factor fusions (18% of cases), the gene encoding nucleophosmin (NPM1) (27%), tumor-suppressor genes (16%), DNA-methylation-related genes (44%), signaling genes (59%), chromatin-modifying genes (30%), myeloid transcription-factor genes (22%), cohesin-complex genes (13%), and spliceosome-complex genes (14%). Patterns of cooperation and mutual exclusivity suggested strong biologic relationships among several of the genes and categories.We identified at least one potential driver mutation in nearly all AML samples and found that a complex interplay of genetic events contributes to AML pathogenesis in individual patients. The databases from this study are widely available to serve as a foundation for further investigations of AML pathogenesis, classification, and risk stratification. (Funded by the National Institutes of Health.).

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