TY - JOUR
T1 - Superenhancer reprogramming drives a B-cell-epithelial transition and high-risk leukemia
AU - Hu, Yeguang
AU - Zhang, Zhihong
AU - Kashiwagi, Mariko
AU - Yoshida, Toshimi
AU - Joshi, Ila
AU - Jena, Nilamani
AU - Somasundaram, Rajesh
AU - Emmanuel, Akinola Olumide
AU - Sigvardsson, Mikael
AU - Fitamant, Julien
AU - El-Bardeesy, Nabeel
AU - Gounari, Fotini
AU - Van Etten, Richard A.
AU - Georgopoulos, Katia
N1 - Funding Information:
This research was supported by National Institutes of HealthNIH grants R01CA162092 and R21AI124326 (K.G.), R01CA090576 (R.A.V.E.), and R01CA190964 (R.A.V.E. and K.G.). K.G.
Publisher Copyright:
© 2016 Hu et al.
PY - 2016/9/1
Y1 - 2016/9/1
N2 - IKAROS is required for the differentiation of highly proliferative pre-B-cell precursors, and loss of IKAROS function indicates poor prognosis in precursor B-cell acute lymphoblastic leukemia (B-ALL). Here we show that IKAROS regulates this developmental stage by positive and negative regulation of superenhancers with distinct lineage affiliations. IKAROS defines superenhancers at pre-B-cell differentiation genes together with B-cell master regulators such as PAX5, EBF1, and IRF4 but is required for a highly permissive chromatin environment, a function that cannot be compensated for by the other transcription factors. IKAROS is also highly enriched at inactive enhancers of genes normally expressed in stem-epithelial cells. Upon IKAROS loss, expression of pre-B-cell differentiation genes is attenuated, while a group of extralineage transcription factors that are directly repressed by IKAROS and depend on EBF1 relocalization at their enhancers for expression is induced. LHX2, LMO2, and TEAD-YAP1, normally kept separate from native B-cell transcription regulators by IKAROS, now cooperate directly with them in a de novo superenhancer network with its own feed-forward transcriptional reinforcement. Induction of de novo superenhancers antagonizes Polycomb repression and superimposes aberrant stem-epithelial cell properties in a B-cell precursor. This dual mechanism of IKAROS regulation promotes differentiation while safeguarding against a hybrid stem-epithelial-B-cell phenotype that underlies high-risk B-ALL.
AB - IKAROS is required for the differentiation of highly proliferative pre-B-cell precursors, and loss of IKAROS function indicates poor prognosis in precursor B-cell acute lymphoblastic leukemia (B-ALL). Here we show that IKAROS regulates this developmental stage by positive and negative regulation of superenhancers with distinct lineage affiliations. IKAROS defines superenhancers at pre-B-cell differentiation genes together with B-cell master regulators such as PAX5, EBF1, and IRF4 but is required for a highly permissive chromatin environment, a function that cannot be compensated for by the other transcription factors. IKAROS is also highly enriched at inactive enhancers of genes normally expressed in stem-epithelial cells. Upon IKAROS loss, expression of pre-B-cell differentiation genes is attenuated, while a group of extralineage transcription factors that are directly repressed by IKAROS and depend on EBF1 relocalization at their enhancers for expression is induced. LHX2, LMO2, and TEAD-YAP1, normally kept separate from native B-cell transcription regulators by IKAROS, now cooperate directly with them in a de novo superenhancer network with its own feed-forward transcriptional reinforcement. Induction of de novo superenhancers antagonizes Polycomb repression and superimposes aberrant stem-epithelial cell properties in a B-cell precursor. This dual mechanism of IKAROS regulation promotes differentiation while safeguarding against a hybrid stem-epithelial-B-cell phenotype that underlies high-risk B-ALL.
KW - LHX2
KW - PRC2
KW - Self-renewal
KW - TEAD
KW - YAP1
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U2 - 10.1101/gad.283762.116
DO - 10.1101/gad.283762.116
M3 - Article
C2 - 27664237
AN - SCOPUS:84988807127
SN - 0890-9369
VL - 30
SP - 1971
EP - 1990
JO - Genes and Development
JF - Genes and Development
IS - 17
ER -