Cargando…

Human skin dendritic cell fate is differentially regulated by the monocyte identity factor Kruppel-like factor 4 during steady state and inflammation

BACKGROUND: Langerhans cell (LC) networks play key roles in immunity and tolerance at body surfaces. LCs are established prenatally and can be replenished from blood monocytes. Unlike skin-resident dermal DCs (dDCs)/interstitial-type DCs and inflammatory dendritic epidermal cells appearing in dermat...

Descripción completa

Detalles Bibliográficos
Autores principales: Jurkin, Jennifer, Krump, Corinna, Köffel, René, Fieber, Christina, Schuster, Christopher, Brunner, Patrick M., Borek, Izabela, Eisenwort, Gregor, Lim, Clarice, Mages, Jörg, Lang, Roland, Bauer, Wolfgang, Mechtcheriakova, Diana, Meshcheryakova, Anastasia, Elbe-Bürger, Adelheid, Stingl, Georg, Strobl, Herbert
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5538449/
https://www.ncbi.nlm.nih.gov/pubmed/27742396
http://dx.doi.org/10.1016/j.jaci.2016.09.018
_version_ 1783254341080055808
author Jurkin, Jennifer
Krump, Corinna
Köffel, René
Fieber, Christina
Schuster, Christopher
Brunner, Patrick M.
Borek, Izabela
Eisenwort, Gregor
Lim, Clarice
Mages, Jörg
Lang, Roland
Bauer, Wolfgang
Mechtcheriakova, Diana
Meshcheryakova, Anastasia
Elbe-Bürger, Adelheid
Stingl, Georg
Strobl, Herbert
author_facet Jurkin, Jennifer
Krump, Corinna
Köffel, René
Fieber, Christina
Schuster, Christopher
Brunner, Patrick M.
Borek, Izabela
Eisenwort, Gregor
Lim, Clarice
Mages, Jörg
Lang, Roland
Bauer, Wolfgang
Mechtcheriakova, Diana
Meshcheryakova, Anastasia
Elbe-Bürger, Adelheid
Stingl, Georg
Strobl, Herbert
author_sort Jurkin, Jennifer
collection PubMed
description BACKGROUND: Langerhans cell (LC) networks play key roles in immunity and tolerance at body surfaces. LCs are established prenatally and can be replenished from blood monocytes. Unlike skin-resident dermal DCs (dDCs)/interstitial-type DCs and inflammatory dendritic epidermal cells appearing in dermatitis/eczema lesions, LCs lack key monocyte-affiliated markers. Inversely, LCs express various epithelial genes critical for their long-term peripheral tissue residency. OBJECTIVE: Dendritic cells (DCs) are functionally involved in inflammatory diseases; however, the mechanisms remained poorly understood. METHODS: In vitro differentiation models of human DCs, gene profiling, gene transduction, and immunohistology were used to identify molecules involved in DC subset specification. RESULTS: Here we identified the monocyte/macrophage lineage identity transcription factor Kruppel-like factor 4 (KLF4) to be inhibited during LC differentiation from human blood monocytes. Conversely, KLF4 is maintained or induced during dermal DC and monocyte-derived dendritic cell/inflammatory dendritic epidermal cell differentiation. We showed that in monocytic cells KLF4 has to be repressed to allow their differentiation into LCs. Moreover, respective KLF4 levels in DC subsets positively correlate with proinflammatory characteristics. We identified epithelial Notch signaling to repress KLF4 in monocytes undergoing LC commitment. Loss of KLF4 in monocytes transcriptionally derepresses Runt-related transcription factor 3 in response to TGF-β1, thereby allowing LC differentiation marked by a low cytokine expression profile. CONCLUSION: Monocyte differentiation into LCs depends on activation of Notch signaling and the concomitant loss of KLF4.
format Online
Article
Text
id pubmed-5538449
institution National Center for Biotechnology Information
language English
publishDate 2016
record_format MEDLINE/PubMed
spelling pubmed-55384492017-08-01 Human skin dendritic cell fate is differentially regulated by the monocyte identity factor Kruppel-like factor 4 during steady state and inflammation Jurkin, Jennifer Krump, Corinna Köffel, René Fieber, Christina Schuster, Christopher Brunner, Patrick M. Borek, Izabela Eisenwort, Gregor Lim, Clarice Mages, Jörg Lang, Roland Bauer, Wolfgang Mechtcheriakova, Diana Meshcheryakova, Anastasia Elbe-Bürger, Adelheid Stingl, Georg Strobl, Herbert J Allergy Clin Immunol Article BACKGROUND: Langerhans cell (LC) networks play key roles in immunity and tolerance at body surfaces. LCs are established prenatally and can be replenished from blood monocytes. Unlike skin-resident dermal DCs (dDCs)/interstitial-type DCs and inflammatory dendritic epidermal cells appearing in dermatitis/eczema lesions, LCs lack key monocyte-affiliated markers. Inversely, LCs express various epithelial genes critical for their long-term peripheral tissue residency. OBJECTIVE: Dendritic cells (DCs) are functionally involved in inflammatory diseases; however, the mechanisms remained poorly understood. METHODS: In vitro differentiation models of human DCs, gene profiling, gene transduction, and immunohistology were used to identify molecules involved in DC subset specification. RESULTS: Here we identified the monocyte/macrophage lineage identity transcription factor Kruppel-like factor 4 (KLF4) to be inhibited during LC differentiation from human blood monocytes. Conversely, KLF4 is maintained or induced during dermal DC and monocyte-derived dendritic cell/inflammatory dendritic epidermal cell differentiation. We showed that in monocytic cells KLF4 has to be repressed to allow their differentiation into LCs. Moreover, respective KLF4 levels in DC subsets positively correlate with proinflammatory characteristics. We identified epithelial Notch signaling to repress KLF4 in monocytes undergoing LC commitment. Loss of KLF4 in monocytes transcriptionally derepresses Runt-related transcription factor 3 in response to TGF-β1, thereby allowing LC differentiation marked by a low cytokine expression profile. CONCLUSION: Monocyte differentiation into LCs depends on activation of Notch signaling and the concomitant loss of KLF4. 2016-10-11 2017-06 /pmc/articles/PMC5538449/ /pubmed/27742396 http://dx.doi.org/10.1016/j.jaci.2016.09.018 Text en http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Jurkin, Jennifer
Krump, Corinna
Köffel, René
Fieber, Christina
Schuster, Christopher
Brunner, Patrick M.
Borek, Izabela
Eisenwort, Gregor
Lim, Clarice
Mages, Jörg
Lang, Roland
Bauer, Wolfgang
Mechtcheriakova, Diana
Meshcheryakova, Anastasia
Elbe-Bürger, Adelheid
Stingl, Georg
Strobl, Herbert
Human skin dendritic cell fate is differentially regulated by the monocyte identity factor Kruppel-like factor 4 during steady state and inflammation
title Human skin dendritic cell fate is differentially regulated by the monocyte identity factor Kruppel-like factor 4 during steady state and inflammation
title_full Human skin dendritic cell fate is differentially regulated by the monocyte identity factor Kruppel-like factor 4 during steady state and inflammation
title_fullStr Human skin dendritic cell fate is differentially regulated by the monocyte identity factor Kruppel-like factor 4 during steady state and inflammation
title_full_unstemmed Human skin dendritic cell fate is differentially regulated by the monocyte identity factor Kruppel-like factor 4 during steady state and inflammation
title_short Human skin dendritic cell fate is differentially regulated by the monocyte identity factor Kruppel-like factor 4 during steady state and inflammation
title_sort human skin dendritic cell fate is differentially regulated by the monocyte identity factor kruppel-like factor 4 during steady state and inflammation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5538449/
https://www.ncbi.nlm.nih.gov/pubmed/27742396
http://dx.doi.org/10.1016/j.jaci.2016.09.018
work_keys_str_mv AT jurkinjennifer humanskindendriticcellfateisdifferentiallyregulatedbythemonocyteidentityfactorkruppellikefactor4duringsteadystateandinflammation
AT krumpcorinna humanskindendriticcellfateisdifferentiallyregulatedbythemonocyteidentityfactorkruppellikefactor4duringsteadystateandinflammation
AT koffelrene humanskindendriticcellfateisdifferentiallyregulatedbythemonocyteidentityfactorkruppellikefactor4duringsteadystateandinflammation
AT fieberchristina humanskindendriticcellfateisdifferentiallyregulatedbythemonocyteidentityfactorkruppellikefactor4duringsteadystateandinflammation
AT schusterchristopher humanskindendriticcellfateisdifferentiallyregulatedbythemonocyteidentityfactorkruppellikefactor4duringsteadystateandinflammation
AT brunnerpatrickm humanskindendriticcellfateisdifferentiallyregulatedbythemonocyteidentityfactorkruppellikefactor4duringsteadystateandinflammation
AT borekizabela humanskindendriticcellfateisdifferentiallyregulatedbythemonocyteidentityfactorkruppellikefactor4duringsteadystateandinflammation
AT eisenwortgregor humanskindendriticcellfateisdifferentiallyregulatedbythemonocyteidentityfactorkruppellikefactor4duringsteadystateandinflammation
AT limclarice humanskindendriticcellfateisdifferentiallyregulatedbythemonocyteidentityfactorkruppellikefactor4duringsteadystateandinflammation
AT magesjorg humanskindendriticcellfateisdifferentiallyregulatedbythemonocyteidentityfactorkruppellikefactor4duringsteadystateandinflammation
AT langroland humanskindendriticcellfateisdifferentiallyregulatedbythemonocyteidentityfactorkruppellikefactor4duringsteadystateandinflammation
AT bauerwolfgang humanskindendriticcellfateisdifferentiallyregulatedbythemonocyteidentityfactorkruppellikefactor4duringsteadystateandinflammation
AT mechtcheriakovadiana humanskindendriticcellfateisdifferentiallyregulatedbythemonocyteidentityfactorkruppellikefactor4duringsteadystateandinflammation
AT meshcheryakovaanastasia humanskindendriticcellfateisdifferentiallyregulatedbythemonocyteidentityfactorkruppellikefactor4duringsteadystateandinflammation
AT elbeburgeradelheid humanskindendriticcellfateisdifferentiallyregulatedbythemonocyteidentityfactorkruppellikefactor4duringsteadystateandinflammation
AT stinglgeorg humanskindendriticcellfateisdifferentiallyregulatedbythemonocyteidentityfactorkruppellikefactor4duringsteadystateandinflammation
AT stroblherbert humanskindendriticcellfateisdifferentiallyregulatedbythemonocyteidentityfactorkruppellikefactor4duringsteadystateandinflammation