Evolution and structure of clinically relevant gene fusions in multiple myeloma

Multiple myeloma is characterised by frequent gene fusions. Here, the authors use data from the Multiple Myeloma Research Foundation CoMMpass Study to further investigate fusion genes in this disease and their clinical relevance.

Bibliographic Details
Main Authors: Steven M. Foltz, Qingsong Gao, Christopher J. Yoon, Hua Sun, Lijun Yao, Yize Li, Reyka G. Jayasinghe, Song Cao, Justin King, Daniel R. Kohnen, Mark A. Fiala, Li Ding, Ravi Vij
Format: Article
Language:English
Published: Nature Publishing Group 2020-05-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-020-16434-y
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spelling doaj-2a4adbc95da54e6daefbf479c5c03fa92021-05-30T11:16:23ZengNature Publishing GroupNature Communications2041-17232020-05-0111111210.1038/s41467-020-16434-yEvolution and structure of clinically relevant gene fusions in multiple myelomaSteven M. Foltz0Qingsong Gao1Christopher J. Yoon2Hua Sun3Lijun Yao4Yize Li5Reyka G. Jayasinghe6Song Cao7Justin King8Daniel R. Kohnen9Mark A. Fiala10Li Ding11Ravi Vij12Department of Medicine, Washington University in St. LouisDepartment of Medicine, Washington University in St. LouisDepartment of Medicine, Washington University in St. LouisDepartment of Medicine, Washington University in St. LouisDepartment of Medicine, Washington University in St. LouisDepartment of Medicine, Washington University in St. LouisDepartment of Medicine, Washington University in St. LouisDepartment of Medicine, Washington University in St. LouisDepartment of Medicine, Washington University in St. LouisDepartment of Medicine, Washington University in St. LouisDepartment of Medicine, Washington University in St. LouisDepartment of Medicine, Washington University in St. LouisDepartment of Medicine, Washington University in St. LouisMultiple myeloma is characterised by frequent gene fusions. Here, the authors use data from the Multiple Myeloma Research Foundation CoMMpass Study to further investigate fusion genes in this disease and their clinical relevance.https://doi.org/10.1038/s41467-020-16434-y
collection DOAJ
language English
format Article
sources DOAJ
author Steven M. Foltz
Qingsong Gao
Christopher J. Yoon
Hua Sun
Lijun Yao
Yize Li
Reyka G. Jayasinghe
Song Cao
Justin King
Daniel R. Kohnen
Mark A. Fiala
Li Ding
Ravi Vij
spellingShingle Steven M. Foltz
Qingsong Gao
Christopher J. Yoon
Hua Sun
Lijun Yao
Yize Li
Reyka G. Jayasinghe
Song Cao
Justin King
Daniel R. Kohnen
Mark A. Fiala
Li Ding
Ravi Vij
Evolution and structure of clinically relevant gene fusions in multiple myeloma
Nature Communications
author_facet Steven M. Foltz
Qingsong Gao
Christopher J. Yoon
Hua Sun
Lijun Yao
Yize Li
Reyka G. Jayasinghe
Song Cao
Justin King
Daniel R. Kohnen
Mark A. Fiala
Li Ding
Ravi Vij
author_sort Steven M. Foltz
title Evolution and structure of clinically relevant gene fusions in multiple myeloma
title_short Evolution and structure of clinically relevant gene fusions in multiple myeloma
title_full Evolution and structure of clinically relevant gene fusions in multiple myeloma
title_fullStr Evolution and structure of clinically relevant gene fusions in multiple myeloma
title_full_unstemmed Evolution and structure of clinically relevant gene fusions in multiple myeloma
title_sort evolution and structure of clinically relevant gene fusions in multiple myeloma
publisher Nature Publishing Group
series Nature Communications
issn 2041-1723
publishDate 2020-05-01
description Multiple myeloma is characterised by frequent gene fusions. Here, the authors use data from the Multiple Myeloma Research Foundation CoMMpass Study to further investigate fusion genes in this disease and their clinical relevance.
url https://doi.org/10.1038/s41467-020-16434-y
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