Cargando…
Integrated genomic analyses identify WEE1 as a critical mediator of cell fate and novel therapeutic target in acute myeloid leukemia
Acute myeloid leukemia (AML) remains a therapeutic challenge despite increasing knowledge about the molecular origins of the disease, as the mechanisms of AML cell escape from chemotherapy remain poorly defined. We hypothesized that AML cells are addicted to molecular pathways in the context of chem...
Autores principales: | , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
2012
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3678731/ https://www.ncbi.nlm.nih.gov/pubmed/22289989 http://dx.doi.org/10.1038/leu.2011.392 |
_version_ | 1782272892604514304 |
---|---|
author | Porter, Christopher C. Kim, Jihye Fosmire, Susan Gearheart, Christy M. van Linden, Annemie Baturin, Dmitry Zaberezhnyy, Vadym Patel, Purvi R. Gao, Dexiang Tan, Aik Choon DeGregori, James |
author_facet | Porter, Christopher C. Kim, Jihye Fosmire, Susan Gearheart, Christy M. van Linden, Annemie Baturin, Dmitry Zaberezhnyy, Vadym Patel, Purvi R. Gao, Dexiang Tan, Aik Choon DeGregori, James |
author_sort | Porter, Christopher C. |
collection | PubMed |
description | Acute myeloid leukemia (AML) remains a therapeutic challenge despite increasing knowledge about the molecular origins of the disease, as the mechanisms of AML cell escape from chemotherapy remain poorly defined. We hypothesized that AML cells are addicted to molecular pathways in the context of chemotherapy and used complementary approaches to identify these addictions. Using novel molecular and computational approaches, we performed genome-wide shRNA screens to identify proteins that mediate AML cell fate after cytarabine exposure, gene expression profiling of AML cells exposed to cytarabine to identify genes with induced expression in this context, and examination of existing gene expression data from primary patient samples. The integration of these independent analyses strongly implicates cell cycle checkpoint proteins, particularly WEE1, as critical mediators of AML cell survival after cytarabine exposure. Knockdown of WEE1 in a secondary screen confirmed its role in AML cell survival. Pharmacologic inhibition of WEE1 in AML cell lines and primary cells is synergistic with cytarabine. Further experiments demonstrate that inhibition of WEE1 prevents S-phase arrest induced by cytarabine, broadening the functions of WEE1 that may be exploited therapeutically. These data highlight the power of integrating functional and descriptive genomics, and identify WEE1 as potential therapeutic target in AML. |
format | Online Article Text |
id | pubmed-3678731 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2012 |
record_format | MEDLINE/PubMed |
spelling | pubmed-36787312013-06-11 Integrated genomic analyses identify WEE1 as a critical mediator of cell fate and novel therapeutic target in acute myeloid leukemia Porter, Christopher C. Kim, Jihye Fosmire, Susan Gearheart, Christy M. van Linden, Annemie Baturin, Dmitry Zaberezhnyy, Vadym Patel, Purvi R. Gao, Dexiang Tan, Aik Choon DeGregori, James Leukemia Article Acute myeloid leukemia (AML) remains a therapeutic challenge despite increasing knowledge about the molecular origins of the disease, as the mechanisms of AML cell escape from chemotherapy remain poorly defined. We hypothesized that AML cells are addicted to molecular pathways in the context of chemotherapy and used complementary approaches to identify these addictions. Using novel molecular and computational approaches, we performed genome-wide shRNA screens to identify proteins that mediate AML cell fate after cytarabine exposure, gene expression profiling of AML cells exposed to cytarabine to identify genes with induced expression in this context, and examination of existing gene expression data from primary patient samples. The integration of these independent analyses strongly implicates cell cycle checkpoint proteins, particularly WEE1, as critical mediators of AML cell survival after cytarabine exposure. Knockdown of WEE1 in a secondary screen confirmed its role in AML cell survival. Pharmacologic inhibition of WEE1 in AML cell lines and primary cells is synergistic with cytarabine. Further experiments demonstrate that inhibition of WEE1 prevents S-phase arrest induced by cytarabine, broadening the functions of WEE1 that may be exploited therapeutically. These data highlight the power of integrating functional and descriptive genomics, and identify WEE1 as potential therapeutic target in AML. 2012-01-13 2012-06 /pmc/articles/PMC3678731/ /pubmed/22289989 http://dx.doi.org/10.1038/leu.2011.392 Text en Users may view, print, copy, download and text and data- mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms |
spellingShingle | Article Porter, Christopher C. Kim, Jihye Fosmire, Susan Gearheart, Christy M. van Linden, Annemie Baturin, Dmitry Zaberezhnyy, Vadym Patel, Purvi R. Gao, Dexiang Tan, Aik Choon DeGregori, James Integrated genomic analyses identify WEE1 as a critical mediator of cell fate and novel therapeutic target in acute myeloid leukemia |
title | Integrated genomic analyses identify WEE1 as a critical mediator of cell fate and novel therapeutic target in acute myeloid leukemia |
title_full | Integrated genomic analyses identify WEE1 as a critical mediator of cell fate and novel therapeutic target in acute myeloid leukemia |
title_fullStr | Integrated genomic analyses identify WEE1 as a critical mediator of cell fate and novel therapeutic target in acute myeloid leukemia |
title_full_unstemmed | Integrated genomic analyses identify WEE1 as a critical mediator of cell fate and novel therapeutic target in acute myeloid leukemia |
title_short | Integrated genomic analyses identify WEE1 as a critical mediator of cell fate and novel therapeutic target in acute myeloid leukemia |
title_sort | integrated genomic analyses identify wee1 as a critical mediator of cell fate and novel therapeutic target in acute myeloid leukemia |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3678731/ https://www.ncbi.nlm.nih.gov/pubmed/22289989 http://dx.doi.org/10.1038/leu.2011.392 |
work_keys_str_mv | AT porterchristopherc integratedgenomicanalysesidentifywee1asacriticalmediatorofcellfateandnoveltherapeutictargetinacutemyeloidleukemia AT kimjihye integratedgenomicanalysesidentifywee1asacriticalmediatorofcellfateandnoveltherapeutictargetinacutemyeloidleukemia AT fosmiresusan integratedgenomicanalysesidentifywee1asacriticalmediatorofcellfateandnoveltherapeutictargetinacutemyeloidleukemia AT gearheartchristym integratedgenomicanalysesidentifywee1asacriticalmediatorofcellfateandnoveltherapeutictargetinacutemyeloidleukemia AT vanlindenannemie integratedgenomicanalysesidentifywee1asacriticalmediatorofcellfateandnoveltherapeutictargetinacutemyeloidleukemia AT baturindmitry integratedgenomicanalysesidentifywee1asacriticalmediatorofcellfateandnoveltherapeutictargetinacutemyeloidleukemia AT zaberezhnyyvadym integratedgenomicanalysesidentifywee1asacriticalmediatorofcellfateandnoveltherapeutictargetinacutemyeloidleukemia AT patelpurvir integratedgenomicanalysesidentifywee1asacriticalmediatorofcellfateandnoveltherapeutictargetinacutemyeloidleukemia AT gaodexiang integratedgenomicanalysesidentifywee1asacriticalmediatorofcellfateandnoveltherapeutictargetinacutemyeloidleukemia AT tanaikchoon integratedgenomicanalysesidentifywee1asacriticalmediatorofcellfateandnoveltherapeutictargetinacutemyeloidleukemia AT degregorijames integratedgenomicanalysesidentifywee1asacriticalmediatorofcellfateandnoveltherapeutictargetinacutemyeloidleukemia |