SummaryDirected differentiation of human embryonic stem cells (ESCs) into cardiovascular cells provides a model for studying molecular mechanisms of human cardiovascular development. Although it is known that chromatin modification patterns in ESCs differ markedly from those in lineage-committed progenitors and differentiated cells, the temporal dynamics of chromatin alterations during differentiation along a defined lineage have not been studied. We show that differentiation of human ESCs into cardiovascular cells is accompanied by programmed temporal alterations in chromatin structure that distinguish key regulators of cardiovascular development from other genes. We used this temporal chromatin signature to identify regulators of cardiac ...
During the phylotypic period, embryos from different genera show similar gene expression patterns, i...
Human embryonic stem (HUES) cells are derived from early individual embryos with unique genetic prin...
<div><p>Here we used predictive gene expression signatures within a multi-species framework to ident...
SummaryHeart development is exquisitely sensitive to the precise temporal regulation of thousands of...
Development of a properly formed heart is vital to life and defects in cardiogenesis lead to congeni...
Development of a properly formed heart is vital to life and defects in cardiogenesis lead to congeni...
Heart development is exquisitely sensitive to the precise temporal regulation of thousands of genes ...
Stem cell-based cardiogenesis has become a powerful tool to enhance our understanding of cardiac de...
Stem cell-based cardiogenesis has become a powerful tool to enhance our understanding of cardiac dev...
Stem cell-based cardiogenesis has become a powerful tool to enhance our understanding of cardiac dev...
Here we used predictive gene expression signatures within a multi-species framework to identify the ...
SummaryHistone modifications have been implicated in stem cell maintenance and differentiation. We h...
SummaryEmbryonic development is characterized by dynamic changes in gene expression, yet the role of...
SummaryDifferentiation of human embryonic stem cells (hESCs) provides a unique opportunity to study ...
Cardiomyocytes are the contractile cells of the heart, responsible for pumping blood and nutrients t...
During the phylotypic period, embryos from different genera show similar gene expression patterns, i...
Human embryonic stem (HUES) cells are derived from early individual embryos with unique genetic prin...
<div><p>Here we used predictive gene expression signatures within a multi-species framework to ident...
SummaryHeart development is exquisitely sensitive to the precise temporal regulation of thousands of...
Development of a properly formed heart is vital to life and defects in cardiogenesis lead to congeni...
Development of a properly formed heart is vital to life and defects in cardiogenesis lead to congeni...
Heart development is exquisitely sensitive to the precise temporal regulation of thousands of genes ...
Stem cell-based cardiogenesis has become a powerful tool to enhance our understanding of cardiac de...
Stem cell-based cardiogenesis has become a powerful tool to enhance our understanding of cardiac dev...
Stem cell-based cardiogenesis has become a powerful tool to enhance our understanding of cardiac dev...
Here we used predictive gene expression signatures within a multi-species framework to identify the ...
SummaryHistone modifications have been implicated in stem cell maintenance and differentiation. We h...
SummaryEmbryonic development is characterized by dynamic changes in gene expression, yet the role of...
SummaryDifferentiation of human embryonic stem cells (hESCs) provides a unique opportunity to study ...
Cardiomyocytes are the contractile cells of the heart, responsible for pumping blood and nutrients t...
During the phylotypic period, embryos from different genera show similar gene expression patterns, i...
Human embryonic stem (HUES) cells are derived from early individual embryos with unique genetic prin...
<div><p>Here we used predictive gene expression signatures within a multi-species framework to ident...