Projects per year
Abstract
The development of multi-cellular organisms from a single fertilized egg requires to differentially execute the information encoded in our DNA. This complex process is regulated by the interplay of transcription factors with a chromatin environment, both of which provide the epigenetic information maintaining cell-type specific gene expression patterns. Moreover, transcription factors and their target genes form vast interacting gene regulatory networks which can be exquisitely stable. However, all developmental processes originate from pluripotent precursor cell types. The production of terminally differentiated cells from such cells, therefore, requires successive changes of cell fates, meaning that genes relevant for the next stage of differentiation must be switched on and genes not relevant anymore must be switched off. The stimulus for the change of cell fate originates from extrinsic signals which set a cascade of intracellular processes in motion that eventually terminate at the genome leading to changes in gene expression and the development of alternate gene regulatory networks. How developmental trajectories are encoded in the genome and how the interplay between intrinsic and extrinsic processes regulates development is one of the major questions in developmental biology. The development of the hematopoietic system has long served as model to understand how changes in gene regulatory networks drive the differentiation of the various blood cell types. In this review, we highlight the main signals and transcription factors and how they are integrated at the level of chromatin programming and gene expression control. We also highlight recent studies identifying the cis-regulatory elements such as enhancers at the global level and explain how their developmental activity is regulated by the cooperation of cell-type specific and ubiquitous transcription factors with extrinsic signals.
Original language | English |
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Article number | 14 |
Number of pages | 15 |
Journal | Stem Cell Investigation |
Volume | 10 |
DOIs | |
Publication status | Published - 25 Jun 2023 |
Keywords
- Hematopoiesis
- gene regulatory networks (GRNs)
- signalling
- RUNX1
- embryonic stem cells (ESCs)
- identification of signalling responsive enhancers
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Dive into the research topics of 'Identification and characterization of enhancer elements controlling cell type-specific and signalling dependent chromatin programming during hematopoietic development'. Together they form a unique fingerprint.Projects
- 2 Finished
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Finding therapeutic targets in FLT3-ITD AML using a systems biology approach
1/09/19 → 31/12/23
Project: Research Councils
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Understanding the interplay of enhancers, chromatin priming elements and signals regulating dynamic gene expression in development
Cazier, J., Brown, J. & Bonifer, C.
Biotechnology & Biological Sciences Research Council
1/10/18 → 2/08/22
Project: Research Councils