Author Correction: Atrx inactivation drives disease-defining phenotypes in glioma cells of origin through global epigenomic remodeling
Carla Danussi,
Promita Bose,
Prasanna T. Parthasarathy,
Pedro C. Silberman,
John S. Arnam,
Mark Vitucci,
Oliver Y. Tang,
Adriana Heguy,
Yuxiang Wang,
Timothy A. Chan,
Gregory J. Riggins,
Erik P. Sulman,
Frederick F. Lang,
Chad J. Creighton,
Benjamin Deneen,
C. Ryan Miller,
David J. Picketts,
Kasthuri Kannan and
Jason T. Huse ()
Additional contact information
Carla Danussi: University of Texas MD Anderson Cancer Center
Promita Bose: Memorial Sloan-Kettering Cancer Center
Prasanna T. Parthasarathy: Memorial Sloan-Kettering Cancer Center
Pedro C. Silberman: Memorial Sloan-Kettering Cancer Center
John S. Arnam: University of Texas MD Anderson Cancer Center
Mark Vitucci: University of North Carolina School of Medicine
Oliver Y. Tang: Memorial Sloan-Kettering Cancer Center
Adriana Heguy: New York University School of Medicine
Yuxiang Wang: Memorial Sloan-Kettering Cancer Center
Timothy A. Chan: Memorial Sloan-Kettering Cancer Center
Gregory J. Riggins: Johns Hopkins School of Medicine
Erik P. Sulman: University of Texas MD Anderson Cancer Center
Frederick F. Lang: University of Texas MD Anderson Cancer Center
Chad J. Creighton: Baylor College of Medicine
Benjamin Deneen: Baylor College of Medicine
C. Ryan Miller: University of North Carolina School of Medicine
David J. Picketts: University of Ottawa
Kasthuri Kannan: New York University School of Medicine
Jason T. Huse: University of Texas MD Anderson Cancer Center
Nature Communications, 2022, vol. 13, issue 1, 1-1
Date: 2022
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DOI: 10.1038/s41467-021-27820-5
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