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Deregulation of polycomb repressor complex 1 modifier AUTS2 in T-cell leukemia

Recently, we identified deregulated expression of the B-cell specific transcription factor MEF2C in T-cell acute lymphoid leukemia (T-ALL). Here, we performed sequence analysis of a regulatory upstream section of MEF2C in T-ALL cell lines which, however, proved devoid of mutations. Unexpectedly, we...

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Autores principales: Nagel, Stefan, Pommerenke, Claudia, Meyer, Corinna, Kaufmann, Maren, Drexler, Hans G., MacLeod, Roderick A.F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5216730/
https://www.ncbi.nlm.nih.gov/pubmed/27322685
http://dx.doi.org/10.18632/oncotarget.9982
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author Nagel, Stefan
Pommerenke, Claudia
Meyer, Corinna
Kaufmann, Maren
Drexler, Hans G.
MacLeod, Roderick A.F.
author_facet Nagel, Stefan
Pommerenke, Claudia
Meyer, Corinna
Kaufmann, Maren
Drexler, Hans G.
MacLeod, Roderick A.F.
author_sort Nagel, Stefan
collection PubMed
description Recently, we identified deregulated expression of the B-cell specific transcription factor MEF2C in T-cell acute lymphoid leukemia (T-ALL). Here, we performed sequence analysis of a regulatory upstream section of MEF2C in T-ALL cell lines which, however, proved devoid of mutations. Unexpectedly, we found strong conservation between the regulatory upstream region of MEF2C (located at chromosomal band 5q14) and an intergenic stretch at 7q11 located between STAG3L4 and AUTS2, covering nearly 20 kb. While the non-coding gene STAG3L4 was inconspicuously expressed, AUTS2 was aberrantly upregulated in 6% of T-ALL patients (public dataset GSE42038) and in 3/24 T-ALL cell lines, two of which represented very immature differentiation stages. AUTS2 expression was higher in normal B-cells than in T-cells, indicating lineage-specific activity in lymphopoiesis. While excluding chromosomal aberrations, examinations of AUTS2 transcriptional regulation in T-ALL cells revealed activation by IL7-IL7R-STAT5-signalling and MEF2C. AUTS2 protein has been shown to interact with polycomb repressor complex 1 subtype 5 (PRC1.5), transforming this particular complex into an activator. Accordingly, expression profiling and functional analyses demonstrated that AUTS2 activated while PCGF5 repressed transcription of NKL homeobox gene MSX1 in T-ALL cells. Forced expression and pharmacological inhibition of EZH2 in addition to H3K27me3 analysis indicated that PRC2 repressed MSX1 as well. Taken together, we found that AUTS2 and MEF2C, despite lying on different chromosomes, share strikingly similar regulatory upstream regions and aberrant expression in T-ALL subsets. Our data implicate chromatin complexes PRC1/AUTS2 and PRC2 in a gene network in T-ALL regulating early lymphoid differentiation.
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spelling pubmed-52167302017-01-15 Deregulation of polycomb repressor complex 1 modifier AUTS2 in T-cell leukemia Nagel, Stefan Pommerenke, Claudia Meyer, Corinna Kaufmann, Maren Drexler, Hans G. MacLeod, Roderick A.F. Oncotarget Research Paper Recently, we identified deregulated expression of the B-cell specific transcription factor MEF2C in T-cell acute lymphoid leukemia (T-ALL). Here, we performed sequence analysis of a regulatory upstream section of MEF2C in T-ALL cell lines which, however, proved devoid of mutations. Unexpectedly, we found strong conservation between the regulatory upstream region of MEF2C (located at chromosomal band 5q14) and an intergenic stretch at 7q11 located between STAG3L4 and AUTS2, covering nearly 20 kb. While the non-coding gene STAG3L4 was inconspicuously expressed, AUTS2 was aberrantly upregulated in 6% of T-ALL patients (public dataset GSE42038) and in 3/24 T-ALL cell lines, two of which represented very immature differentiation stages. AUTS2 expression was higher in normal B-cells than in T-cells, indicating lineage-specific activity in lymphopoiesis. While excluding chromosomal aberrations, examinations of AUTS2 transcriptional regulation in T-ALL cells revealed activation by IL7-IL7R-STAT5-signalling and MEF2C. AUTS2 protein has been shown to interact with polycomb repressor complex 1 subtype 5 (PRC1.5), transforming this particular complex into an activator. Accordingly, expression profiling and functional analyses demonstrated that AUTS2 activated while PCGF5 repressed transcription of NKL homeobox gene MSX1 in T-ALL cells. Forced expression and pharmacological inhibition of EZH2 in addition to H3K27me3 analysis indicated that PRC2 repressed MSX1 as well. Taken together, we found that AUTS2 and MEF2C, despite lying on different chromosomes, share strikingly similar regulatory upstream regions and aberrant expression in T-ALL subsets. Our data implicate chromatin complexes PRC1/AUTS2 and PRC2 in a gene network in T-ALL regulating early lymphoid differentiation. Impact Journals LLC 2016-06-13 /pmc/articles/PMC5216730/ /pubmed/27322685 http://dx.doi.org/10.18632/oncotarget.9982 Text en Copyright: © 2016 Nagel et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Nagel, Stefan
Pommerenke, Claudia
Meyer, Corinna
Kaufmann, Maren
Drexler, Hans G.
MacLeod, Roderick A.F.
Deregulation of polycomb repressor complex 1 modifier AUTS2 in T-cell leukemia
title Deregulation of polycomb repressor complex 1 modifier AUTS2 in T-cell leukemia
title_full Deregulation of polycomb repressor complex 1 modifier AUTS2 in T-cell leukemia
title_fullStr Deregulation of polycomb repressor complex 1 modifier AUTS2 in T-cell leukemia
title_full_unstemmed Deregulation of polycomb repressor complex 1 modifier AUTS2 in T-cell leukemia
title_short Deregulation of polycomb repressor complex 1 modifier AUTS2 in T-cell leukemia
title_sort deregulation of polycomb repressor complex 1 modifier auts2 in t-cell leukemia
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5216730/
https://www.ncbi.nlm.nih.gov/pubmed/27322685
http://dx.doi.org/10.18632/oncotarget.9982
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