Chromatin Regulation in Development: Current Understanding and Approaches

Author:

Zheng Zi Hao12,Sam Tsz Wing12,Zeng YingYing13,Chu Justin Jang Hann4567ORCID,Loh Yuin-Han1278ORCID

Affiliation:

1. Laboratory for Epigenetics, Stem Cells & Cell Therapy, Programme in Stem Cell, Regenerative Medicine and Aging, ASTAR Institute of Molecular and Cell Biology, 138673, Singapore

2. Department of Physiology, NUS Yong Loo Lin School of Medicine, 2 Medical Drive, MD9, 117593, Singapore

3. School of Biological Sciences, Nanyang Technological University, 637551, Singapore

4. Laboratory of Molecular RNA Virology and Antiviral Strategies, Department of Microbiology and Immunology, Yong Loo Lin School of Medicine, National University Health System, National University of Singapore, MD4 Level 5, 5 Science Drive 2, 117597, Singapore

5. Infectious Diseases Translational Research Program, Yong Loo Lin School of Medicine, National University of Singapore, 10 Medical Drive, 117597, Singapore

6. Institute of Molecular and Cell Biology, Agency for Science, Technology and Research (ASTAR), 61 Biopolis Drive, Proteos #06-05, 138673, Singapore

7. NUS Graduate School for Integrative Sciences and Engineering, National University of Singapore, 28 Medical Drive, 117456, Singapore

8. Department of Biological Sciences, National University of Singapore, 117543, Singapore

Abstract

The regulation of mammalian stem cell fate during differentiation is complex and can be delineated across many levels. At the chromatin level, the replacement of histone variants by chromatin-modifying proteins, enrichment of specific active and repressive histone modifications, long-range gene interactions, and topological changes all play crucial roles in the determination of cell fate. These processes control regulatory elements of critical transcriptional factors, thereby establishing the networks unique to different cell fates and initiate waves of distinctive transcription events. Due to the technical challenges posed by previous methods, it was difficult to decipher the mechanism of cell fate determination at early embryogenesis through chromatin regulation. Recently, single-cell approaches have revolutionised the field of developmental biology, allowing unprecedented insights into chromatin structure and interactions in early lineage segregation events during differentiation. Here, we review the recent technological advancements and how they have furthered our understanding of chromatin regulation during early differentiation events.

Funder

Singapore National Research Foundation

Publisher

Hindawi Limited

Subject

Cell Biology,Molecular Biology

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