[HTML][HTML] Activation, decommissioning, and dememorization: enhancers in a life cycle

X Wu, X Wu, W Xie - Trends in Biochemical Sciences, 2023 - cell.com
Spatiotemporal regulation of cell type-specific gene expression is essential to convert a
zygote into a complex organism that contains hundreds of distinct cell types. A class of cis …

Activation, decommissioning, and dememorization: enhancers in a life cycle.

X Wu, W Xie - Trends in Biochemical Sciences, 2023 - europepmc.org
Spatiotemporal regulation of cell type-specific gene expression is essential to convert a
zygote into a complex organism that contains hundreds of distinct cell types. A class of cis …

[HTML][HTML] Activation, decommissioning, and dememorization: enhancers in a life cycle

X Wu, X Wu, W Xie - Trends in Biochemical Sciences, 2023 - Elsevier
Spatiotemporal regulation of cell type-specific gene expression is essential to convert a
zygote into a complex organism that contains hundreds of distinct cell types. A class of cis …

[PDF][PDF] Activation, decommissioning, and dememorization: enhancers in a life cycle

X Wu, X Wu, W Xie - 2023 - researchgate.net
Spatiotemporal regulation of cell type-specific gene expression is essential to convert a
zygote into a complex organism that contains hundreds of distinct cell types. A class of cis …

Activation, decommissioning, and dememorization: enhancers in a life cycle

X Wu, X Wu, W Xie - Trends in biochemical sciences, 2023 - pubmed.ncbi.nlm.nih.gov
Spatiotemporal regulation of cell type-specific gene expression is essential to convert a
zygote into a complex organism that contains hundreds of distinct cell types. A class of cis …