AbstractThe T-box transcription factor BRACHYURY (T) is a key regulator of mesoderm formation during early development. Complete loss of T has been shown to lead to embryonic lethality around E10.0. Here we characterize an inducible miRNA-based in vivo knockdown mouse model of T, termed KD3-T, which exhibits a hypomorphic phenotype. KD3-T embryos display axial skeletal defects caused by apoptosis of paraxial mesoderm, which is accompanied by urorectal malformations resembling the murine uro-recto-caudal syndrome and human caudal regression syndrome phenotypes. We show that there is a reduction of T in the notochord of KD3-T embryos which results in impaired notochord differentiation and its subsequent loss, whereas levels of T in the tailbu...
The cell type-specific expression of key transcription factors is central to development and disease...
The vertebrate body is laid down in a head to tail fashion by cells emerging from a growth zone at ...
SummaryThe design of effective cell replacement therapies requires detailed knowledge of how embryon...
The T-box transcription factor BRACHYURY (T) is a key regulator of mesoderm formation during early d...
AbstractThe T-box transcription factor BRACHYURY (T) is a key regulator of mesoderm formation during...
The T-box transcription factor BRACHYURY (T) is a key regulator of mesoderm formation during early d...
The node-streak border region comprising notochord progenitor cells (NPCs) at the posterior node and...
The node-streak border region comprising notochord progenitor cells (NPCs) at the posterior node and...
<div><h3>Background</h3><p>The T-box transcription factor Brachyury (T) is essential for formation o...
T-box transcription factors play essential roles in multiple aspects of vertebrate development. Here...
The T-box transcription factor Brachyury (T) is essential for formation of the posterior mesoderm an...
The T-box transcription factor Brachyury (T) is essential for formation of the posterior mesoderm an...
The T-box transcription factor Brachyury (T) is essential for formation of the posterior mesoderm an...
AbstractThis study characterizes defects associated with abnormal mesoderm development in mouse embr...
Brachyury(+) mesodermal cell population with purity over 79% was obtained from differentiating brach...
The cell type-specific expression of key transcription factors is central to development and disease...
The vertebrate body is laid down in a head to tail fashion by cells emerging from a growth zone at ...
SummaryThe design of effective cell replacement therapies requires detailed knowledge of how embryon...
The T-box transcription factor BRACHYURY (T) is a key regulator of mesoderm formation during early d...
AbstractThe T-box transcription factor BRACHYURY (T) is a key regulator of mesoderm formation during...
The T-box transcription factor BRACHYURY (T) is a key regulator of mesoderm formation during early d...
The node-streak border region comprising notochord progenitor cells (NPCs) at the posterior node and...
The node-streak border region comprising notochord progenitor cells (NPCs) at the posterior node and...
<div><h3>Background</h3><p>The T-box transcription factor Brachyury (T) is essential for formation o...
T-box transcription factors play essential roles in multiple aspects of vertebrate development. Here...
The T-box transcription factor Brachyury (T) is essential for formation of the posterior mesoderm an...
The T-box transcription factor Brachyury (T) is essential for formation of the posterior mesoderm an...
The T-box transcription factor Brachyury (T) is essential for formation of the posterior mesoderm an...
AbstractThis study characterizes defects associated with abnormal mesoderm development in mouse embr...
Brachyury(+) mesodermal cell population with purity over 79% was obtained from differentiating brach...
The cell type-specific expression of key transcription factors is central to development and disease...
The vertebrate body is laid down in a head to tail fashion by cells emerging from a growth zone at ...
SummaryThe design of effective cell replacement therapies requires detailed knowledge of how embryon...