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Single-cell analyses of regulatory network perturbations using enhancer-targeting TALEs suggest novel roles for PU.1 during haematopoietic specification

Transcription factors (TFs) act within wider regulatory networks to control cell identity and fate. Numerous TFs, including Scl (Tal1) and PU.1 (Spi1), are known regulators of developmental and adult haematopoiesis, but how they act within wider TF networks is still poorly understood. Transcription...

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Autores principales: Wilkinson, Adam C., Kawata, Viviane K. S., Schütte, Judith, Gao, Xuefei, Antoniou, Stella, Baumann, Claudia, Woodhouse, Steven, Hannah, Rebecca, Tanaka, Yosuke, Swiers, Gemma, Moignard, Victoria, Fisher, Jasmin, Hidetoshi, Shimauchi, Tijssen, Marloes R., de Bruijn, Marella F. T. R., Liu, Pentao, Göttgens, Berthold
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Company of Biologists 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4197694/
https://www.ncbi.nlm.nih.gov/pubmed/25252941
http://dx.doi.org/10.1242/dev.115709
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author Wilkinson, Adam C.
Kawata, Viviane K. S.
Schütte, Judith
Gao, Xuefei
Antoniou, Stella
Baumann, Claudia
Woodhouse, Steven
Hannah, Rebecca
Tanaka, Yosuke
Swiers, Gemma
Moignard, Victoria
Fisher, Jasmin
Hidetoshi, Shimauchi
Tijssen, Marloes R.
de Bruijn, Marella F. T. R.
Liu, Pentao
Göttgens, Berthold
author_facet Wilkinson, Adam C.
Kawata, Viviane K. S.
Schütte, Judith
Gao, Xuefei
Antoniou, Stella
Baumann, Claudia
Woodhouse, Steven
Hannah, Rebecca
Tanaka, Yosuke
Swiers, Gemma
Moignard, Victoria
Fisher, Jasmin
Hidetoshi, Shimauchi
Tijssen, Marloes R.
de Bruijn, Marella F. T. R.
Liu, Pentao
Göttgens, Berthold
author_sort Wilkinson, Adam C.
collection PubMed
description Transcription factors (TFs) act within wider regulatory networks to control cell identity and fate. Numerous TFs, including Scl (Tal1) and PU.1 (Spi1), are known regulators of developmental and adult haematopoiesis, but how they act within wider TF networks is still poorly understood. Transcription activator-like effectors (TALEs) are a novel class of genetic tool based on the modular DNA-binding domains of Xanthomonas TAL proteins, which enable DNA sequence-specific targeting and the manipulation of endogenous gene expression. Here, we report TALEs engineered to target the PU.1-14kb and Scl+40kb transcriptional enhancers as efficient new tools to perturb the expression of these key haematopoietic TFs. We confirmed the efficiency of these TALEs at the single-cell level using high-throughput RT-qPCR, which also allowed us to assess the consequences of both PU.1 activation and repression on wider TF networks during developmental haematopoiesis. Combined with comprehensive cellular assays, these experiments uncovered novel roles for PU.1 during early haematopoietic specification. Finally, transgenic mouse studies confirmed that the PU.1-14kb element is active at sites of definitive haematopoiesis in vivo and PU.1 is detectable in haemogenic endothelium and early committing blood cells. We therefore establish TALEs as powerful new tools to study the functionality of transcriptional networks that control developmental processes such as early haematopoiesis.
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spelling pubmed-41976942014-11-07 Single-cell analyses of regulatory network perturbations using enhancer-targeting TALEs suggest novel roles for PU.1 during haematopoietic specification Wilkinson, Adam C. Kawata, Viviane K. S. Schütte, Judith Gao, Xuefei Antoniou, Stella Baumann, Claudia Woodhouse, Steven Hannah, Rebecca Tanaka, Yosuke Swiers, Gemma Moignard, Victoria Fisher, Jasmin Hidetoshi, Shimauchi Tijssen, Marloes R. de Bruijn, Marella F. T. R. Liu, Pentao Göttgens, Berthold Development Techniques and Resources Transcription factors (TFs) act within wider regulatory networks to control cell identity and fate. Numerous TFs, including Scl (Tal1) and PU.1 (Spi1), are known regulators of developmental and adult haematopoiesis, but how they act within wider TF networks is still poorly understood. Transcription activator-like effectors (TALEs) are a novel class of genetic tool based on the modular DNA-binding domains of Xanthomonas TAL proteins, which enable DNA sequence-specific targeting and the manipulation of endogenous gene expression. Here, we report TALEs engineered to target the PU.1-14kb and Scl+40kb transcriptional enhancers as efficient new tools to perturb the expression of these key haematopoietic TFs. We confirmed the efficiency of these TALEs at the single-cell level using high-throughput RT-qPCR, which also allowed us to assess the consequences of both PU.1 activation and repression on wider TF networks during developmental haematopoiesis. Combined with comprehensive cellular assays, these experiments uncovered novel roles for PU.1 during early haematopoietic specification. Finally, transgenic mouse studies confirmed that the PU.1-14kb element is active at sites of definitive haematopoiesis in vivo and PU.1 is detectable in haemogenic endothelium and early committing blood cells. We therefore establish TALEs as powerful new tools to study the functionality of transcriptional networks that control developmental processes such as early haematopoiesis. The Company of Biologists 2014-10 /pmc/articles/PMC4197694/ /pubmed/25252941 http://dx.doi.org/10.1242/dev.115709 Text en © 2014. Published by The Company of Biologists Ltd http://creativecommons.org/licenses/by/3.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0), which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle Techniques and Resources
Wilkinson, Adam C.
Kawata, Viviane K. S.
Schütte, Judith
Gao, Xuefei
Antoniou, Stella
Baumann, Claudia
Woodhouse, Steven
Hannah, Rebecca
Tanaka, Yosuke
Swiers, Gemma
Moignard, Victoria
Fisher, Jasmin
Hidetoshi, Shimauchi
Tijssen, Marloes R.
de Bruijn, Marella F. T. R.
Liu, Pentao
Göttgens, Berthold
Single-cell analyses of regulatory network perturbations using enhancer-targeting TALEs suggest novel roles for PU.1 during haematopoietic specification
title Single-cell analyses of regulatory network perturbations using enhancer-targeting TALEs suggest novel roles for PU.1 during haematopoietic specification
title_full Single-cell analyses of regulatory network perturbations using enhancer-targeting TALEs suggest novel roles for PU.1 during haematopoietic specification
title_fullStr Single-cell analyses of regulatory network perturbations using enhancer-targeting TALEs suggest novel roles for PU.1 during haematopoietic specification
title_full_unstemmed Single-cell analyses of regulatory network perturbations using enhancer-targeting TALEs suggest novel roles for PU.1 during haematopoietic specification
title_short Single-cell analyses of regulatory network perturbations using enhancer-targeting TALEs suggest novel roles for PU.1 during haematopoietic specification
title_sort single-cell analyses of regulatory network perturbations using enhancer-targeting tales suggest novel roles for pu.1 during haematopoietic specification
topic Techniques and Resources
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4197694/
https://www.ncbi.nlm.nih.gov/pubmed/25252941
http://dx.doi.org/10.1242/dev.115709
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