Human skin is maintained by the differentiation and maturation of interfollicular stem and progenitors cells. We used DeepCAGE, genome-wide profiling of histone modifications and retroviral integration analysis, to map transcripts, promoters, enhancers, and super-enhancers (SEs) in prospectively isolated keratinocytes and transit-amplifying progenitors, and retrospectively defined keratinocyte stem cells. We show that >95% of the active promoters are in common and differentially regulated in progenitors and differentiated keratinocytes, while approximately half of the enhancers and SEs are stage specific and account for most of the epigenetic changes occurring during differentiation. Transcription factor (TF) motif identification and correlation with TF binding site maps allowed the identification of TF circuitries acting on enhancers and SEs during differentiation. Overall, our study provides a broad, genome-wide description of chromatin dynamics and differential enhancer and promoter usage during epithelial differentiation, and describes a novel approach to identify active regulatory elements in rare stem cell populations.

Dynamic Transcriptional and Epigenetic Regulation of Human Epidermal Keratinocyte Differentiation / Cavazza, Alessia; Miccio, Annarita; Romano, Oriana; Petiti, Luca; Malagoli Tagliazucchi, Guidantonio; Peano, Clelia; Severgnini, Marco; Rizzi, Ermanno; De Bellis, Gianluca; Bicciato, Silvio; Mavilio, Fulvio. - In: STEM CELL REPORTS. - ISSN 2213-6711. - ELETTRONICO. - 6:4(2016), pp. 618-632. [10.1016/j.stemcr.2016.03.003]

Dynamic Transcriptional and Epigenetic Regulation of Human Epidermal Keratinocyte Differentiation

Cavazza, Alessia;ROMANO, ORIANA;BICCIATO, Silvio;MAVILIO, Fulvio
2016

Abstract

Human skin is maintained by the differentiation and maturation of interfollicular stem and progenitors cells. We used DeepCAGE, genome-wide profiling of histone modifications and retroviral integration analysis, to map transcripts, promoters, enhancers, and super-enhancers (SEs) in prospectively isolated keratinocytes and transit-amplifying progenitors, and retrospectively defined keratinocyte stem cells. We show that >95% of the active promoters are in common and differentially regulated in progenitors and differentiated keratinocytes, while approximately half of the enhancers and SEs are stage specific and account for most of the epigenetic changes occurring during differentiation. Transcription factor (TF) motif identification and correlation with TF binding site maps allowed the identification of TF circuitries acting on enhancers and SEs during differentiation. Overall, our study provides a broad, genome-wide description of chromatin dynamics and differential enhancer and promoter usage during epithelial differentiation, and describes a novel approach to identify active regulatory elements in rare stem cell populations.
Ahead Of Print from PubMed (19/10/2020)
2016
31-mar-2016
no
Inglese
6
4
618
632
15
Biochemistry; Cell Biology; Developmental Biology; Genetics
open
info:eu-repo/semantics/article
Contributo su RIVISTA::Articolo su rivista
262
Dynamic Transcriptional and Epigenetic Regulation of Human Epidermal Keratinocyte Differentiation / Cavazza, Alessia; Miccio, Annarita; Romano, Oriana; Petiti, Luca; Malagoli Tagliazucchi, Guidantonio; Peano, Clelia; Severgnini, Marco; Rizzi, Ermanno; De Bellis, Gianluca; Bicciato, Silvio; Mavilio, Fulvio. - In: STEM CELL REPORTS. - ISSN 2213-6711. - ELETTRONICO. - 6:4(2016), pp. 618-632. [10.1016/j.stemcr.2016.03.003]
Cavazza, Alessia; Miccio, Annarita; Romano, Oriana; Petiti, Luca; Malagoli Tagliazucchi, Guidantonio; Peano, Clelia; Severgnini, Marco; Rizzi, Ermanno...espandi
11
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11380/1111515
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