SummaryDirected reprogramming of differentiated cells allows the generation of specific cell types for therapeutics and can provide unexpected insights into development. A recent study demonstrates that efficient reprogramming of Caenorhabditis elegans germ cells into neurons can be achieved by knocking down a histone chaperone gene and ectopic expression of a terminal selector transcription factor
SummaryEmbryonic development is characterized by dynamic changes in gene expression, yet the role of...
Germline stem cells are key to genome transmission to future generations. Over recent years, there h...
Germline stem cells (GSCs) are the best understood adult stem cell types in the nematode Caenorhabdi...
SummaryDirected reprogramming of differentiated cells allows the generation of specific cell types f...
Throughout their journey to forming new individuals, germline stem cells must remain totipotent, par...
SummaryThroughout their journey to forming new individuals, germline stem cells must remain totipote...
The potential of a cell to produce all types of differentiated cells in an organism is termed totipo...
AbstractGerm cells are distinct from somatic cells in their immortality, totipotency, and ability to...
The potential of a cell to produce all types of differentiated cells in an organism is termed totipo...
Cell fate conversion by the forced overexpression of transcription factors (TFs) is a process known ...
AbstractGerm plasm is a specialized cytoplasm that is physically segregated to the germline cells du...
Specialized ribonucleoprotein organelles collectively known as germ granules are found in the germli...
Specialized ribonucleoprotein organelles collectively known as germ granules are found in the germli...
Post-transcriptional regulatory mechanisms are widely used to influence cell fate decisions in germ ...
Germline stem cells (GSCs) are the best understood adult stem cell types in the nematode Caenorhabdi...
SummaryEmbryonic development is characterized by dynamic changes in gene expression, yet the role of...
Germline stem cells are key to genome transmission to future generations. Over recent years, there h...
Germline stem cells (GSCs) are the best understood adult stem cell types in the nematode Caenorhabdi...
SummaryDirected reprogramming of differentiated cells allows the generation of specific cell types f...
Throughout their journey to forming new individuals, germline stem cells must remain totipotent, par...
SummaryThroughout their journey to forming new individuals, germline stem cells must remain totipote...
The potential of a cell to produce all types of differentiated cells in an organism is termed totipo...
AbstractGerm cells are distinct from somatic cells in their immortality, totipotency, and ability to...
The potential of a cell to produce all types of differentiated cells in an organism is termed totipo...
Cell fate conversion by the forced overexpression of transcription factors (TFs) is a process known ...
AbstractGerm plasm is a specialized cytoplasm that is physically segregated to the germline cells du...
Specialized ribonucleoprotein organelles collectively known as germ granules are found in the germli...
Specialized ribonucleoprotein organelles collectively known as germ granules are found in the germli...
Post-transcriptional regulatory mechanisms are widely used to influence cell fate decisions in germ ...
Germline stem cells (GSCs) are the best understood adult stem cell types in the nematode Caenorhabdi...
SummaryEmbryonic development is characterized by dynamic changes in gene expression, yet the role of...
Germline stem cells are key to genome transmission to future generations. Over recent years, there h...
Germline stem cells (GSCs) are the best understood adult stem cell types in the nematode Caenorhabdi...