Cargando…

Gata2 deficiency delays leukemogenesis while contributing to aggressive leukemia phenotype in Cbfb-MYH11 knockin mice

Inversion of chromosome 16 (inv(16)) generates a fusion gene CBFB-MYH11, which is a driver mutation for acute myeloid leukemia (AML). Gene expression profiling suggests that Gata2, a hematopoietic transcription factor, is a top upregulated genes in preleukemic Cbfb-MYH11 knockin mice and is expresse...

Descripción completa

Detalles Bibliográficos
Autores principales: Saida, Satoshi, Zhen, Tao, Kim, Erika, Yu, Kai, Lopez, Guadalupe, McReynolds, Lisa J, Liu, Paul P
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7056539/
https://www.ncbi.nlm.nih.gov/pubmed/31624376
http://dx.doi.org/10.1038/s41375-019-0605-7
_version_ 1783503496044085248
author Saida, Satoshi
Zhen, Tao
Kim, Erika
Yu, Kai
Lopez, Guadalupe
McReynolds, Lisa J
Liu, Paul P
author_facet Saida, Satoshi
Zhen, Tao
Kim, Erika
Yu, Kai
Lopez, Guadalupe
McReynolds, Lisa J
Liu, Paul P
author_sort Saida, Satoshi
collection PubMed
description Inversion of chromosome 16 (inv(16)) generates a fusion gene CBFB-MYH11, which is a driver mutation for acute myeloid leukemia (AML). Gene expression profiling suggests that Gata2, a hematopoietic transcription factor, is a top upregulated genes in preleukemic Cbfb-MYH11 knockin mice and is expressed in human inv(16) AML. On the other hand, we have also identified recurrent monoallelic deletions of GATA2 in relapsed human CBF-AML patients. To clarify the role of Gata2 in leukemogenesis by Cbfb-MYH11, we generated conditional Cbfb-MYH11 knockin mice with Gata2 heterozygous knockout. Gata2 heterozygous knockout reduced abnormal myeloid progenitors, which are capable of inducing leukemia in the Cbfb-MYH11 mice. Consequently, Cbfb-MYH11 mice with Gata2 heterozygous knockout developed leukemia with longer latencies than those with intact Gata2. Interestingly, leukemic cells with Gata2 heterozygous knockout gained higher number of mutations and showed more aggressive phenotype in both primary and transplanted mice. Moreover, leukemic cells with Gata2 heterozygous knockout showed higher repopulating capacity in competitive transplantation experiments. In summary, reduction of Gata2 activity affects mutational dynamics of leukemia with delayed leukemia onset in Cbfb-MYH11 knockin mice, but paradoxically results in a more aggressive leukemia phenotype, which may be correlated with leukemia relapse or poor prognosis in human patients.
format Online
Article
Text
id pubmed-7056539
institution National Center for Biotechnology Information
language English
publishDate 2019
record_format MEDLINE/PubMed
spelling pubmed-70565392020-04-17 Gata2 deficiency delays leukemogenesis while contributing to aggressive leukemia phenotype in Cbfb-MYH11 knockin mice Saida, Satoshi Zhen, Tao Kim, Erika Yu, Kai Lopez, Guadalupe McReynolds, Lisa J Liu, Paul P Leukemia Article Inversion of chromosome 16 (inv(16)) generates a fusion gene CBFB-MYH11, which is a driver mutation for acute myeloid leukemia (AML). Gene expression profiling suggests that Gata2, a hematopoietic transcription factor, is a top upregulated genes in preleukemic Cbfb-MYH11 knockin mice and is expressed in human inv(16) AML. On the other hand, we have also identified recurrent monoallelic deletions of GATA2 in relapsed human CBF-AML patients. To clarify the role of Gata2 in leukemogenesis by Cbfb-MYH11, we generated conditional Cbfb-MYH11 knockin mice with Gata2 heterozygous knockout. Gata2 heterozygous knockout reduced abnormal myeloid progenitors, which are capable of inducing leukemia in the Cbfb-MYH11 mice. Consequently, Cbfb-MYH11 mice with Gata2 heterozygous knockout developed leukemia with longer latencies than those with intact Gata2. Interestingly, leukemic cells with Gata2 heterozygous knockout gained higher number of mutations and showed more aggressive phenotype in both primary and transplanted mice. Moreover, leukemic cells with Gata2 heterozygous knockout showed higher repopulating capacity in competitive transplantation experiments. In summary, reduction of Gata2 activity affects mutational dynamics of leukemia with delayed leukemia onset in Cbfb-MYH11 knockin mice, but paradoxically results in a more aggressive leukemia phenotype, which may be correlated with leukemia relapse or poor prognosis in human patients. 2019-10-17 2020-03 /pmc/articles/PMC7056539/ /pubmed/31624376 http://dx.doi.org/10.1038/s41375-019-0605-7 Text en Users may view, print, copy, and download 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
Saida, Satoshi
Zhen, Tao
Kim, Erika
Yu, Kai
Lopez, Guadalupe
McReynolds, Lisa J
Liu, Paul P
Gata2 deficiency delays leukemogenesis while contributing to aggressive leukemia phenotype in Cbfb-MYH11 knockin mice
title Gata2 deficiency delays leukemogenesis while contributing to aggressive leukemia phenotype in Cbfb-MYH11 knockin mice
title_full Gata2 deficiency delays leukemogenesis while contributing to aggressive leukemia phenotype in Cbfb-MYH11 knockin mice
title_fullStr Gata2 deficiency delays leukemogenesis while contributing to aggressive leukemia phenotype in Cbfb-MYH11 knockin mice
title_full_unstemmed Gata2 deficiency delays leukemogenesis while contributing to aggressive leukemia phenotype in Cbfb-MYH11 knockin mice
title_short Gata2 deficiency delays leukemogenesis while contributing to aggressive leukemia phenotype in Cbfb-MYH11 knockin mice
title_sort gata2 deficiency delays leukemogenesis while contributing to aggressive leukemia phenotype in cbfb-myh11 knockin mice
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7056539/
https://www.ncbi.nlm.nih.gov/pubmed/31624376
http://dx.doi.org/10.1038/s41375-019-0605-7
work_keys_str_mv AT saidasatoshi gata2deficiencydelaysleukemogenesiswhilecontributingtoaggressiveleukemiaphenotypeincbfbmyh11knockinmice
AT zhentao gata2deficiencydelaysleukemogenesiswhilecontributingtoaggressiveleukemiaphenotypeincbfbmyh11knockinmice
AT kimerika gata2deficiencydelaysleukemogenesiswhilecontributingtoaggressiveleukemiaphenotypeincbfbmyh11knockinmice
AT yukai gata2deficiencydelaysleukemogenesiswhilecontributingtoaggressiveleukemiaphenotypeincbfbmyh11knockinmice
AT lopezguadalupe gata2deficiencydelaysleukemogenesiswhilecontributingtoaggressiveleukemiaphenotypeincbfbmyh11knockinmice
AT mcreynoldslisaj gata2deficiencydelaysleukemogenesiswhilecontributingtoaggressiveleukemiaphenotypeincbfbmyh11knockinmice
AT liupaulp gata2deficiencydelaysleukemogenesiswhilecontributingtoaggressiveleukemiaphenotypeincbfbmyh11knockinmice