TY - JOUR
T1 - Chromatin remodeler CHD7 targets active enhancer region to regulate cell type-specific gene expression in human neural crest cells
AU - Sanosaka, Tsukasa
AU - Okuno, Hironobu
AU - Mizota, Noriko
AU - Andoh-Noda, Tomoko
AU - Sato, Miki
AU - Tomooka, Ryo
AU - Banno, Satoe
AU - Kohyama, Jun
AU - Okano, Hideyuki
N1 - Funding Information:
We are very grateful to the members of the Department of Physiology, Keio University School of Medicine. We also thank E. Nishi, R. Shimamura, I. Koya, and M. Chai for their assistance with the experiments, and Dr. Shinya Yamanaka (Kyoto University) for providing the hiPSC clone (1210B2). This work was supported by JSPS KAKENHI Grant Number JP21K06396 to T.S. and JP19H03623 to J.K. We also thank Susan Furness, Ph.D., from Edanz (https://jp.edanz.com/ac ) for editing a draft of this manuscript.
Funding Information:
We are very grateful to the members of the Department of Physiology, Keio University School of Medicine. We also thank E. Nishi, R. Shimamura, I. Koya, and M. Chai for their assistance with the experiments, and Dr. Shinya Yamanaka (Kyoto University) for providing the hiPSC clone (1210B2). This work was supported by JSPS KAKENHI Grant Number JP21K06396 to T.S. and JP19H03623 to J.K. We also thank Susan Furness, Ph.D., from Edanz ( https://jp.edanz.com/ac ) for editing a draft of this manuscript.
Publisher Copyright:
© 2022, The Author(s).
PY - 2022/12
Y1 - 2022/12
N2 - A mutation in the chromatin remodeler chromodomain helicase DNA-binding 7 (CHD7) gene causes the multiple congenital anomaly CHARGE syndrome. The craniofacial anomalies observed in CHARGE syndrome are caused by dysfunctions of neural crest cells (NCCs), which originate from the neural tube. However, the mechanism by which CHD7 regulates the function of human NCCs (hNCCs) remains unclear. We aimed to characterize the cis-regulatory elements governed by CHD7 in hNCCs by analyzing genome-wide ChIP-Seq data and identifying hNCC-specific CHD7-binding profiles. We compared CHD7-binding regions among cell types, including human induced pluripotent stem cells and human neuroepithelial cells, to determine the comprehensive properties of CHD7-binding in hNCCs. Importantly, analysis of the hNCC-specific CHD7-bound region revealed transcription factor AP-2α as a potential co-factor facilitating the cell type-specific transcriptional program in hNCCs. CHD7 was strongly associated with active enhancer regions, permitting the expression of hNCC-specific genes to sustain the function of hNCCs. Our findings reveal the regulatory mechanisms of CHD7 in hNCCs, thus providing additional information regarding the transcriptional programs in hNCCs.
AB - A mutation in the chromatin remodeler chromodomain helicase DNA-binding 7 (CHD7) gene causes the multiple congenital anomaly CHARGE syndrome. The craniofacial anomalies observed in CHARGE syndrome are caused by dysfunctions of neural crest cells (NCCs), which originate from the neural tube. However, the mechanism by which CHD7 regulates the function of human NCCs (hNCCs) remains unclear. We aimed to characterize the cis-regulatory elements governed by CHD7 in hNCCs by analyzing genome-wide ChIP-Seq data and identifying hNCC-specific CHD7-binding profiles. We compared CHD7-binding regions among cell types, including human induced pluripotent stem cells and human neuroepithelial cells, to determine the comprehensive properties of CHD7-binding in hNCCs. Importantly, analysis of the hNCC-specific CHD7-bound region revealed transcription factor AP-2α as a potential co-factor facilitating the cell type-specific transcriptional program in hNCCs. CHD7 was strongly associated with active enhancer regions, permitting the expression of hNCC-specific genes to sustain the function of hNCCs. Our findings reveal the regulatory mechanisms of CHD7 in hNCCs, thus providing additional information regarding the transcriptional programs in hNCCs.
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U2 - 10.1038/s41598-022-27293-6
DO - 10.1038/s41598-022-27293-6
M3 - Article
C2 - 36587182
AN - SCOPUS:85145393720
SN - 2045-2322
VL - 12
JO - Scientific reports
JF - Scientific reports
IS - 1
M1 - 22648
ER -