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TALENs-mediated gene disruption of FLT3 in leukemia cells: Using genome-editing approach for exploring the molecular basis of gene abnormality

Novel analytic tools are needed to elucidate the molecular basis of leukemia-relevant gene mutations in the post-genome era. We generated isogenic leukemia cell clones in which the FLT3 gene was disrupted in a single allele using TALENs. Isogenic clones with mono-allelic disrupted FLT3 were compared...

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Autores principales: Wang, Jue, Li, Tongjuan, Zhou, Mi, Hu, Zheng, Zhou, Xiaoxi, Zhou, Shiqiu, Wang, Na, Huang, Liang, Zhao, Lei, Cao, Yang, Xiao, Min, Ma, Ding, Zhou, Pengfei, Shang, Zhen, Zhou, Jianfeng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4680874/
https://www.ncbi.nlm.nih.gov/pubmed/26669855
http://dx.doi.org/10.1038/srep18454
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author Wang, Jue
Li, Tongjuan
Zhou, Mi
Hu, Zheng
Zhou, Xiaoxi
Zhou, Shiqiu
Wang, Na
Huang, Liang
Zhao, Lei
Cao, Yang
Xiao, Min
Ma, Ding
Zhou, Pengfei
Shang, Zhen
Zhou, Jianfeng
author_facet Wang, Jue
Li, Tongjuan
Zhou, Mi
Hu, Zheng
Zhou, Xiaoxi
Zhou, Shiqiu
Wang, Na
Huang, Liang
Zhao, Lei
Cao, Yang
Xiao, Min
Ma, Ding
Zhou, Pengfei
Shang, Zhen
Zhou, Jianfeng
author_sort Wang, Jue
collection PubMed
description Novel analytic tools are needed to elucidate the molecular basis of leukemia-relevant gene mutations in the post-genome era. We generated isogenic leukemia cell clones in which the FLT3 gene was disrupted in a single allele using TALENs. Isogenic clones with mono-allelic disrupted FLT3 were compared to an isogenic wild-type control clone and parental leukemia cells for transcriptional expression, downstream FLT3 signaling and proliferation capacity. The global gene expression profiles of mutant K562 clones and corresponding wild-type controls were compared using RNA-seq. The transcriptional levels and the ligand-dependent autophosphorylation of FLT3 were decreased in the mutant clones. TALENs-mediated FLT3 haplo-insufficiency impaired cell proliferation and colony formation in vitro. These inhibitory effects were maintained in vivo, improving the survival of NOD/SCID mice transplanted with mutant K562 clones. Cluster analysis revealed that the gene expression pattern of isogenic clones was determined by the FLT3 mutant status rather than the deviation among individual isogenic clones. Differentially expressed genes between the mutant and wild-type clones revealed an activation of nonsense-mediated decay pathway in mutant K562 clones as well as an inhibited FLT3 signaling. Our data support that this genome-editing approach is a robust and generally applicable platform to explore the molecular bases of gene mutations.
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spelling pubmed-46808742015-12-18 TALENs-mediated gene disruption of FLT3 in leukemia cells: Using genome-editing approach for exploring the molecular basis of gene abnormality Wang, Jue Li, Tongjuan Zhou, Mi Hu, Zheng Zhou, Xiaoxi Zhou, Shiqiu Wang, Na Huang, Liang Zhao, Lei Cao, Yang Xiao, Min Ma, Ding Zhou, Pengfei Shang, Zhen Zhou, Jianfeng Sci Rep Article Novel analytic tools are needed to elucidate the molecular basis of leukemia-relevant gene mutations in the post-genome era. We generated isogenic leukemia cell clones in which the FLT3 gene was disrupted in a single allele using TALENs. Isogenic clones with mono-allelic disrupted FLT3 were compared to an isogenic wild-type control clone and parental leukemia cells for transcriptional expression, downstream FLT3 signaling and proliferation capacity. The global gene expression profiles of mutant K562 clones and corresponding wild-type controls were compared using RNA-seq. The transcriptional levels and the ligand-dependent autophosphorylation of FLT3 were decreased in the mutant clones. TALENs-mediated FLT3 haplo-insufficiency impaired cell proliferation and colony formation in vitro. These inhibitory effects were maintained in vivo, improving the survival of NOD/SCID mice transplanted with mutant K562 clones. Cluster analysis revealed that the gene expression pattern of isogenic clones was determined by the FLT3 mutant status rather than the deviation among individual isogenic clones. Differentially expressed genes between the mutant and wild-type clones revealed an activation of nonsense-mediated decay pathway in mutant K562 clones as well as an inhibited FLT3 signaling. Our data support that this genome-editing approach is a robust and generally applicable platform to explore the molecular bases of gene mutations. Nature Publishing Group 2015-12-16 /pmc/articles/PMC4680874/ /pubmed/26669855 http://dx.doi.org/10.1038/srep18454 Text en Copyright © 2015, Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Wang, Jue
Li, Tongjuan
Zhou, Mi
Hu, Zheng
Zhou, Xiaoxi
Zhou, Shiqiu
Wang, Na
Huang, Liang
Zhao, Lei
Cao, Yang
Xiao, Min
Ma, Ding
Zhou, Pengfei
Shang, Zhen
Zhou, Jianfeng
TALENs-mediated gene disruption of FLT3 in leukemia cells: Using genome-editing approach for exploring the molecular basis of gene abnormality
title TALENs-mediated gene disruption of FLT3 in leukemia cells: Using genome-editing approach for exploring the molecular basis of gene abnormality
title_full TALENs-mediated gene disruption of FLT3 in leukemia cells: Using genome-editing approach for exploring the molecular basis of gene abnormality
title_fullStr TALENs-mediated gene disruption of FLT3 in leukemia cells: Using genome-editing approach for exploring the molecular basis of gene abnormality
title_full_unstemmed TALENs-mediated gene disruption of FLT3 in leukemia cells: Using genome-editing approach for exploring the molecular basis of gene abnormality
title_short TALENs-mediated gene disruption of FLT3 in leukemia cells: Using genome-editing approach for exploring the molecular basis of gene abnormality
title_sort talens-mediated gene disruption of flt3 in leukemia cells: using genome-editing approach for exploring the molecular basis of gene abnormality
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4680874/
https://www.ncbi.nlm.nih.gov/pubmed/26669855
http://dx.doi.org/10.1038/srep18454
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