Stem cells self-renew but also give rise to daughter cells that are committed to lineage-specific differentiation. To achieve this remarkable task, they can undergo an intrinsically asymmetric cell division whereby they segregate cell fate determinants into only one of the two daughter cells. Alternatively, they can orient their division plane so that only one of the two daughter cells maintains contact with the niche and stem cell identity. These distinct pathways have been elucidated mostly in Drosophila. Although the molecules involved are highly conserved in vertebrates, the way they act is tissue specific and sometimes very different from invertebrates
The majority of cells that build the nervous system of animals are generated early in embryonic deve...
Adult stem cells maintain many tissues and organs throughout the life of an organism by serving as r...
Many stem cells utilize asymmetric cell division (ACD) to produce a self-renewed stem cell and a dif...
Life is a succession of cell divisions. For multicelled beings, diversity in the fate of a cell’s pr...
Stem cells have the remarkable ability to undergo proliferative symmetric divisions and self-renewin...
AbstractOne widespread mechanism for the generation of diverse cell types is the unequal inheritance...
Stem cells are defined by both their ability to make more stem cells, a property known as 'self...
Much has been made of the idea that asymmetric cell division is a defining characteristic of stem ce...
Asymmetric cell division is an evolutionarily conserved mechanism widely used to generate cellular d...
Stem cells divide either symmetrically or asymmetrically. In asymmetric division, post-mitotic influ...
The Immortal Strand Hypothesis proposes that asymmetrically dividing stem cells cosegregate chromati...
All complex multicellular organisms must solve the problem of generating diverse and appropriately p...
Stem cells possess the properties of self-renewal and differentiation, and mainly rely on two strate...
Many stem cells utilize asymmetric cell division (ACD) to produce a self-renewed stem cell and a dif...
The ability of progenitor stem cells to divide asymmetrically allows for the production of diverse d...
The majority of cells that build the nervous system of animals are generated early in embryonic deve...
Adult stem cells maintain many tissues and organs throughout the life of an organism by serving as r...
Many stem cells utilize asymmetric cell division (ACD) to produce a self-renewed stem cell and a dif...
Life is a succession of cell divisions. For multicelled beings, diversity in the fate of a cell’s pr...
Stem cells have the remarkable ability to undergo proliferative symmetric divisions and self-renewin...
AbstractOne widespread mechanism for the generation of diverse cell types is the unequal inheritance...
Stem cells are defined by both their ability to make more stem cells, a property known as 'self...
Much has been made of the idea that asymmetric cell division is a defining characteristic of stem ce...
Asymmetric cell division is an evolutionarily conserved mechanism widely used to generate cellular d...
Stem cells divide either symmetrically or asymmetrically. In asymmetric division, post-mitotic influ...
The Immortal Strand Hypothesis proposes that asymmetrically dividing stem cells cosegregate chromati...
All complex multicellular organisms must solve the problem of generating diverse and appropriately p...
Stem cells possess the properties of self-renewal and differentiation, and mainly rely on two strate...
Many stem cells utilize asymmetric cell division (ACD) to produce a self-renewed stem cell and a dif...
The ability of progenitor stem cells to divide asymmetrically allows for the production of diverse d...
The majority of cells that build the nervous system of animals are generated early in embryonic deve...
Adult stem cells maintain many tissues and organs throughout the life of an organism by serving as r...
Many stem cells utilize asymmetric cell division (ACD) to produce a self-renewed stem cell and a dif...