During mouse neocortical development, the Wnt–b-catenin signaling pathway plays essential roles in various phenomena including neuronal differentiation and proliferation of neural precursor cells (NPCs). Production of the appropriate number of neurons without depletion of the NPC population requires precise regulation of the balance between differentiation and maintenance of NPCs. However, the mechanism that suppresses Wnt signaling to prevent premature neuronal differentiation of NPCs is poorly understood. We now show that the HMG box transcription factor Tcf3 (also known as Tcf7l1) contributes to this mechanism. Tcf3 is highly expressed in undifferentiated NPCs in the mouse neocortex, and its expression is reduced in intermediate neuronal...
peer reviewedThe role of WNT/β-catenin signalling in mouse neocortex development remains ambiguous. ...
The role of WNT/β-catenin signalling in mouse neocortex development remains ambiguous. Most studies ...
SummaryRegulating the choice between neural stem cell maintenance versus differentiation determines ...
<div><p>During mouse neocortical development, the Wnt–β-catenin signaling pathway plays essential ro...
Abstract Generation of neurons in the embryonic neocortex is a balanced process of proliferation and...
textabstractCanonical Wnt signaling plays a rate-limiting role in regulating self-renewal and differ...
AbstractNeurogenesis in the developing neocortex is a strictly regulated process of cell division an...
To understand how the complex architecture of the brain is formed duringdevelopment, it is essential...
Project (M.A. Biological Sciences (Stem Cell))--California State University, Sacramento, 2015.One of...
Summary Neural stem cells (NSCs) can be obtained from a variety of sources, but not all NSCs exhibit...
The heterochromatin barrier must be overcome to generate induced pluripotent stem cells and cell fus...
The co-occupancy of Tcf3 with Oct4, Sox2 and Nanog on embryonic stem cell (ESC) chromatin indicated ...
Activation of Wnt signaling enhances self-renewal of mouse embryonic and neural stem/progenitor cell...
SummaryMany stem cells (SCs) respond to Wnt signaling, but whether β-catenin's DNA binding partners,...
Wnt/β-catenin canonical pathway has very important roles both in the regulation of self-renewal and ...
peer reviewedThe role of WNT/β-catenin signalling in mouse neocortex development remains ambiguous. ...
The role of WNT/β-catenin signalling in mouse neocortex development remains ambiguous. Most studies ...
SummaryRegulating the choice between neural stem cell maintenance versus differentiation determines ...
<div><p>During mouse neocortical development, the Wnt–β-catenin signaling pathway plays essential ro...
Abstract Generation of neurons in the embryonic neocortex is a balanced process of proliferation and...
textabstractCanonical Wnt signaling plays a rate-limiting role in regulating self-renewal and differ...
AbstractNeurogenesis in the developing neocortex is a strictly regulated process of cell division an...
To understand how the complex architecture of the brain is formed duringdevelopment, it is essential...
Project (M.A. Biological Sciences (Stem Cell))--California State University, Sacramento, 2015.One of...
Summary Neural stem cells (NSCs) can be obtained from a variety of sources, but not all NSCs exhibit...
The heterochromatin barrier must be overcome to generate induced pluripotent stem cells and cell fus...
The co-occupancy of Tcf3 with Oct4, Sox2 and Nanog on embryonic stem cell (ESC) chromatin indicated ...
Activation of Wnt signaling enhances self-renewal of mouse embryonic and neural stem/progenitor cell...
SummaryMany stem cells (SCs) respond to Wnt signaling, but whether β-catenin's DNA binding partners,...
Wnt/β-catenin canonical pathway has very important roles both in the regulation of self-renewal and ...
peer reviewedThe role of WNT/β-catenin signalling in mouse neocortex development remains ambiguous. ...
The role of WNT/β-catenin signalling in mouse neocortex development remains ambiguous. Most studies ...
SummaryRegulating the choice between neural stem cell maintenance versus differentiation determines ...