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Transcriptional Programming of Normal and Inflamed Human Epidermis at Single-Cell Resolution

Perturbations in the transcriptional programs specifying epidermal differentiation cause diverse skin pathologies ranging from impaired barrier function to inflammatory skin disease. However, the global scope and organization of this complex cellular program remain undefined. Here we report single-c...

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Autores principales: Cheng, Jeffrey B., Sedgewick, Andrew J., Finnegan, Alex I., Harirchian, Paymann, Lee, Jerry, Kwon, Sunjong, Fassett, Marlys S., Golovato, Justin, Gray, Matthew, Ghadially, Ruby, Liao, Wilson, White, Bethany E. Perez, Mauro, Theodora M., Mully, Thaddeus, Kim, Esther A., Sbitany, Hani, Neuhaus, Isaac M., Grekin, Roy C., Yu, Siegrid S., Gray, Joe W., Purdom, Elizabeth, Paus, Ralf, Vaske, Charles J., Benz, Stephen C., Song, Jun S., Cho, Raymond J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6367716/
https://www.ncbi.nlm.nih.gov/pubmed/30355494
http://dx.doi.org/10.1016/j.celrep.2018.09.006
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author Cheng, Jeffrey B.
Sedgewick, Andrew J.
Finnegan, Alex I.
Harirchian, Paymann
Lee, Jerry
Kwon, Sunjong
Fassett, Marlys S.
Golovato, Justin
Gray, Matthew
Ghadially, Ruby
Liao, Wilson
White, Bethany E. Perez
Mauro, Theodora M.
Mully, Thaddeus
Kim, Esther A.
Sbitany, Hani
Neuhaus, Isaac M.
Grekin, Roy C.
Yu, Siegrid S.
Gray, Joe W.
Purdom, Elizabeth
Paus, Ralf
Vaske, Charles J.
Benz, Stephen C.
Song, Jun S.
Cho, Raymond J.
author_facet Cheng, Jeffrey B.
Sedgewick, Andrew J.
Finnegan, Alex I.
Harirchian, Paymann
Lee, Jerry
Kwon, Sunjong
Fassett, Marlys S.
Golovato, Justin
Gray, Matthew
Ghadially, Ruby
Liao, Wilson
White, Bethany E. Perez
Mauro, Theodora M.
Mully, Thaddeus
Kim, Esther A.
Sbitany, Hani
Neuhaus, Isaac M.
Grekin, Roy C.
Yu, Siegrid S.
Gray, Joe W.
Purdom, Elizabeth
Paus, Ralf
Vaske, Charles J.
Benz, Stephen C.
Song, Jun S.
Cho, Raymond J.
author_sort Cheng, Jeffrey B.
collection PubMed
description Perturbations in the transcriptional programs specifying epidermal differentiation cause diverse skin pathologies ranging from impaired barrier function to inflammatory skin disease. However, the global scope and organization of this complex cellular program remain undefined. Here we report single-cell RNA sequencing profiles of 92,889 human epidermal cells from 9 normal and 3 inflamed skin samples. Transcriptomics-derived keratinocyte subpopulations reflect classic epidermal strata but also sharply compartmentalize epithelial functions such as cell-cell communication, inflammation, and WNT pathway modulation. In keratinocytes, ~12% of assessed transcript expression varies in coordinate patterns, revealing undescribed gene expression programs governing epidermal homeostasis. We also identify molecular fingerprints of inflammatory skin states, including S100 activation in the interfollicular epidermis of normal scalp, enrichment of a CD1C(+)CD301A(+) myeloid dendritic cell population in psoriatic epidermis, and IL1β(hi) CCL3(hi)CD14(+) monocyte-derived macrophages enriched in foreskin. This compendium of RNA profiles provides a critical step toward elucidating epidermal diseases of development, differentiation, and inflammation.
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spelling pubmed-63677162019-02-08 Transcriptional Programming of Normal and Inflamed Human Epidermis at Single-Cell Resolution Cheng, Jeffrey B. Sedgewick, Andrew J. Finnegan, Alex I. Harirchian, Paymann Lee, Jerry Kwon, Sunjong Fassett, Marlys S. Golovato, Justin Gray, Matthew Ghadially, Ruby Liao, Wilson White, Bethany E. Perez Mauro, Theodora M. Mully, Thaddeus Kim, Esther A. Sbitany, Hani Neuhaus, Isaac M. Grekin, Roy C. Yu, Siegrid S. Gray, Joe W. Purdom, Elizabeth Paus, Ralf Vaske, Charles J. Benz, Stephen C. Song, Jun S. Cho, Raymond J. Cell Rep Article Perturbations in the transcriptional programs specifying epidermal differentiation cause diverse skin pathologies ranging from impaired barrier function to inflammatory skin disease. However, the global scope and organization of this complex cellular program remain undefined. Here we report single-cell RNA sequencing profiles of 92,889 human epidermal cells from 9 normal and 3 inflamed skin samples. Transcriptomics-derived keratinocyte subpopulations reflect classic epidermal strata but also sharply compartmentalize epithelial functions such as cell-cell communication, inflammation, and WNT pathway modulation. In keratinocytes, ~12% of assessed transcript expression varies in coordinate patterns, revealing undescribed gene expression programs governing epidermal homeostasis. We also identify molecular fingerprints of inflammatory skin states, including S100 activation in the interfollicular epidermis of normal scalp, enrichment of a CD1C(+)CD301A(+) myeloid dendritic cell population in psoriatic epidermis, and IL1β(hi) CCL3(hi)CD14(+) monocyte-derived macrophages enriched in foreskin. This compendium of RNA profiles provides a critical step toward elucidating epidermal diseases of development, differentiation, and inflammation. 2018-10-23 /pmc/articles/PMC6367716/ /pubmed/30355494 http://dx.doi.org/10.1016/j.celrep.2018.09.006 Text en http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license.
spellingShingle Article
Cheng, Jeffrey B.
Sedgewick, Andrew J.
Finnegan, Alex I.
Harirchian, Paymann
Lee, Jerry
Kwon, Sunjong
Fassett, Marlys S.
Golovato, Justin
Gray, Matthew
Ghadially, Ruby
Liao, Wilson
White, Bethany E. Perez
Mauro, Theodora M.
Mully, Thaddeus
Kim, Esther A.
Sbitany, Hani
Neuhaus, Isaac M.
Grekin, Roy C.
Yu, Siegrid S.
Gray, Joe W.
Purdom, Elizabeth
Paus, Ralf
Vaske, Charles J.
Benz, Stephen C.
Song, Jun S.
Cho, Raymond J.
Transcriptional Programming of Normal and Inflamed Human Epidermis at Single-Cell Resolution
title Transcriptional Programming of Normal and Inflamed Human Epidermis at Single-Cell Resolution
title_full Transcriptional Programming of Normal and Inflamed Human Epidermis at Single-Cell Resolution
title_fullStr Transcriptional Programming of Normal and Inflamed Human Epidermis at Single-Cell Resolution
title_full_unstemmed Transcriptional Programming of Normal and Inflamed Human Epidermis at Single-Cell Resolution
title_short Transcriptional Programming of Normal and Inflamed Human Epidermis at Single-Cell Resolution
title_sort transcriptional programming of normal and inflamed human epidermis at single-cell resolution
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6367716/
https://www.ncbi.nlm.nih.gov/pubmed/30355494
http://dx.doi.org/10.1016/j.celrep.2018.09.006
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