AbstractMetazoan stem cells repopulate tissues during adult life by dividing asymmetrically to generate another stem cell and a cell that terminally differentiates. Wnt signaling regulates the division pattern of stem cells in flies and vertebrates. While the short-lived nematode C. elegans has no adult somatic stem cells, the lateral epithelial seam cells divide in a stem cell-like manner in each larval stage, usually generating a posterior daughter that retains the seam cell fate and an anterior daughter that terminally differentiates. We show that while wild-type adult animals have 16 seam cells per side, animals with reduced function of the TCF homolog POP-1 have as many as 67 seam cells, and animals with reduced function of the β-caten...
A correct balance between proliferative and asymmetric cell divisions underlies normal development, ...
A correct balance between proliferative and asymmetric cell divisions underlies normal development, ...
The development of tissues and organs in embryos is controlled by an interplay of several signaling ...
AbstractMetazoan stem cells repopulate tissues during adult life by dividing asymmetrically to gener...
The Wnt signaling pathway is one of the key extracellular pathways involved in many developmental pr...
The Wnt signaling pathway is one of the key extracellular pathways involved in many developmental pr...
SummaryWnt signaling regulates many aspects of metazoan development, including stem cells [1–3]. In ...
ABSTRACT The evolutionarily conserved Wnt/b-catenin signaling pathway plays a fundamental role durin...
AbstractThe Wnt signaling pathway regulates multiple aspects of the development of stem cell-like ep...
A correct balance between proliferative and asymmetric cell divisions underlies normal development, ...
Asymmetric cell division is critical during development, as it influences processes such as cell fat...
Asymmetric cell division is critical during development, as it influences processes such as cell fat...
AbstractThe polarities of several cells that divide asymmetrically during Caenorhabditis elegans dev...
Transitions between asymmetric (self-renewing) and symmetric (proliferative) cell divisions are robu...
Recent work has shown that components of the Wnt signaling pathway directly activate a homeodomain t...
A correct balance between proliferative and asymmetric cell divisions underlies normal development, ...
A correct balance between proliferative and asymmetric cell divisions underlies normal development, ...
The development of tissues and organs in embryos is controlled by an interplay of several signaling ...
AbstractMetazoan stem cells repopulate tissues during adult life by dividing asymmetrically to gener...
The Wnt signaling pathway is one of the key extracellular pathways involved in many developmental pr...
The Wnt signaling pathway is one of the key extracellular pathways involved in many developmental pr...
SummaryWnt signaling regulates many aspects of metazoan development, including stem cells [1–3]. In ...
ABSTRACT The evolutionarily conserved Wnt/b-catenin signaling pathway plays a fundamental role durin...
AbstractThe Wnt signaling pathway regulates multiple aspects of the development of stem cell-like ep...
A correct balance between proliferative and asymmetric cell divisions underlies normal development, ...
Asymmetric cell division is critical during development, as it influences processes such as cell fat...
Asymmetric cell division is critical during development, as it influences processes such as cell fat...
AbstractThe polarities of several cells that divide asymmetrically during Caenorhabditis elegans dev...
Transitions between asymmetric (self-renewing) and symmetric (proliferative) cell divisions are robu...
Recent work has shown that components of the Wnt signaling pathway directly activate a homeodomain t...
A correct balance between proliferative and asymmetric cell divisions underlies normal development, ...
A correct balance between proliferative and asymmetric cell divisions underlies normal development, ...
The development of tissues and organs in embryos is controlled by an interplay of several signaling ...