In the developing nervous system, neural stem cells are polarized and maintain an apical domain facing a central lumen. The presence of apical membrane is thought to have a profound influence on maintaining the stem cell state. With the onset of neurogenesis, cells lose their polarization, and the concomitant loss of the apical domain coincides with a loss of the stem cell identity. Little is known about the molecular signals controlling apical membrane size. Here, we use two neuroepithelial cell systems, one derived from regenerating axolotl spinal cord and the other from human embryonic stem cells, to identify a molecular signaling pathway initiated by lysophosphatidic acid that controls apical membrane size and consequently controls and ...
INTRODUCTION. To date, the activation mechanisms of molecular and cellular pathways that lead stem c...
Expansion of the neocortex requires symmetric divisions of neuroepithelial cells, the primary progen...
Incomplete regeneration and restoration of function in damaged nerves is a major clinical challenge....
In the developing nervous system, neural stem cells are polarized and maintain an apical domain faci...
<div><p>Formation of the metazoan body plan requires a complex interplay of morphological changes an...
Formation of the metazoan body plan requires a complex interplay of morphological changes and patter...
A dynamic balance between stem cell maintenance and differentiation paces generation of post‐mitotic...
Stem cells are defined by their ability to both self-renew as well as to produce cells that differen...
Abstract Background Lysophospholipids regulate the morphology and growth of neurons, neural cell lin...
Inheritance of apical membrane is proposed to maintain vertebrate neural stem cell proliferation. Ho...
Neurons are generated during both, embryonic development and adulthood. One hallmark of embryonic an...
Abstract All neurons and macroglial cells of vertebrates derive from the neuroepithelium. Neuroepith...
At the onset of neurogenesis in the mammalian central nervous system, neuroepithelial cells switch f...
Apical cell growth seems to have independently evolved throughout the major lineages of life. To a c...
The regulation of adherens junctions (AJs) is critical for multiple events during CNS development, i...
INTRODUCTION. To date, the activation mechanisms of molecular and cellular pathways that lead stem c...
Expansion of the neocortex requires symmetric divisions of neuroepithelial cells, the primary progen...
Incomplete regeneration and restoration of function in damaged nerves is a major clinical challenge....
In the developing nervous system, neural stem cells are polarized and maintain an apical domain faci...
<div><p>Formation of the metazoan body plan requires a complex interplay of morphological changes an...
Formation of the metazoan body plan requires a complex interplay of morphological changes and patter...
A dynamic balance between stem cell maintenance and differentiation paces generation of post‐mitotic...
Stem cells are defined by their ability to both self-renew as well as to produce cells that differen...
Abstract Background Lysophospholipids regulate the morphology and growth of neurons, neural cell lin...
Inheritance of apical membrane is proposed to maintain vertebrate neural stem cell proliferation. Ho...
Neurons are generated during both, embryonic development and adulthood. One hallmark of embryonic an...
Abstract All neurons and macroglial cells of vertebrates derive from the neuroepithelium. Neuroepith...
At the onset of neurogenesis in the mammalian central nervous system, neuroepithelial cells switch f...
Apical cell growth seems to have independently evolved throughout the major lineages of life. To a c...
The regulation of adherens junctions (AJs) is critical for multiple events during CNS development, i...
INTRODUCTION. To date, the activation mechanisms of molecular and cellular pathways that lead stem c...
Expansion of the neocortex requires symmetric divisions of neuroepithelial cells, the primary progen...
Incomplete regeneration and restoration of function in damaged nerves is a major clinical challenge....