AbstractStem cells undergo symmetric and asymmetric division to maintain the dynamic equilibrium of the stem cell pool and also to generate a variety of differentiated cells. The homeostatic mechanism controlling the choice between self-renewal and differentiation of stem cells is poorly understood. We show here that ceh-16, encoding the C. elegans ortholog of the transcription factor Engrailed, controls symmetric and asymmetric division of stem cell-like seam cells. Loss of function of ceh-16 causes certain seam cells, which normally undergo symmetric self-renewal expansion division with both daughters adopting the seam cell fate, to divide asymmetrically with only one daughter retaining the seam cell fate. The human engrailed homolog En2 ...
Biological systems are subject to inherent stochasticity. Nevertheless, development is remarkably ro...
The proliferation of progenitor cells and tissue‐specific stem cells underlies the formation and mai...
Seam cells in Caenorhabditis elegans provide a paradigm for the stem cell mode of division, with the...
AbstractStem cells undergo symmetric and asymmetric division to maintain the dynamic equilibrium of ...
A correct balance between proliferative and asymmetric cell divisions underlies normal development, ...
Transitions between asymmetric (self-renewing) and symmetric (proliferative) cell divisions are robu...
A correct balance between proliferative and asymmetric cell divisions underlies normal development, ...
A correct balance between proliferative and asymmetric cell divisions underlies normal development, ...
AbstractMetazoan stem cells repopulate tissues during adult life by dividing asymmetrically to gener...
AbstractMetazoan stem cells repopulate tissues during adult life by dividing asymmetrically to gener...
SummaryAsymmetric cell division is a mechanism for achieving cellular diversity. In C. elegans, many...
SummaryHow asymmetric divisions are connected to the terminal differentiation program of neuronal su...
Biological systems are subject to inherent stochasticity. Nevertheless, development is remarkably ro...
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...
Biological systems are subject to inherent stochasticity. Nevertheless, development is remarkably ro...
The proliferation of progenitor cells and tissue‐specific stem cells underlies the formation and mai...
Seam cells in Caenorhabditis elegans provide a paradigm for the stem cell mode of division, with the...
AbstractStem cells undergo symmetric and asymmetric division to maintain the dynamic equilibrium of ...
A correct balance between proliferative and asymmetric cell divisions underlies normal development, ...
Transitions between asymmetric (self-renewing) and symmetric (proliferative) cell divisions are robu...
A correct balance between proliferative and asymmetric cell divisions underlies normal development, ...
A correct balance between proliferative and asymmetric cell divisions underlies normal development, ...
AbstractMetazoan stem cells repopulate tissues during adult life by dividing asymmetrically to gener...
AbstractMetazoan stem cells repopulate tissues during adult life by dividing asymmetrically to gener...
SummaryAsymmetric cell division is a mechanism for achieving cellular diversity. In C. elegans, many...
SummaryHow asymmetric divisions are connected to the terminal differentiation program of neuronal su...
Biological systems are subject to inherent stochasticity. Nevertheless, development is remarkably ro...
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...
Biological systems are subject to inherent stochasticity. Nevertheless, development is remarkably ro...
The proliferation of progenitor cells and tissue‐specific stem cells underlies the formation and mai...
Seam cells in Caenorhabditis elegans provide a paradigm for the stem cell mode of division, with the...