The investigation of cell lineages and clonal organization in tissues is facilitated by techniques that allow labelling of clonal cell lineages. Here, we describe a novel transgenic mouse that allows clonal cell lineages to be traced in virtually any tissue. A green fluorescent cell lineage is generated by a random mutation at an enhanced green fluorescent protein gene that carries a premature stop codon, ensuring clonality. The transgenic system allows efficient detection of mutations and stem-cell fate mapping in the epidermis using live mice, as well as in the kidney and liver post-mortem. Cell lineages that descended from single epidermal stem cells were found to be capable of generating three adjacent corneocytes using the system, prov...
Discovering the genetic changes underlying species differences is a central goal in evolutionary gen...
Mammalian epidermis is maintained by stem cells that have the ability to self-renew and generate dau...
In adult skin epidermis and the epithelium lining the esophagus cells are constantly shed from the t...
Cell fate mapping techniques which can label clonal cell lineages are of importance because they all...
The classical model of epidermal proliferative units (EPUs) postulates that each EPU is composed of ...
Abstract Background Non-invasive autofluorescent repo...
Objective To labele MESPU35, a embryonic stem (ES) cell line derived from C57BL/6j mouse, with enhan...
The embryonic stem cell line derivation from nonpermissive mouse strains is a challenging and highly...
Transplantation studies and cell lineage analyses require the ability to explicitly distinguish morp...
A new method is developed for estimating rates of somatic mutation in vivo. The stop-enhanced green ...
Journal ArticleEmbryonic stem cells (ES) are pluripotent and may therefore serve as a source for the...
AbstractThe green fluorescent protein (GFP) is responsible for the green bioluminescence of the jell...
Advances in optical imaging modalities and the continued evolution of genetically-encoded fluorescen...
International audienceThere is a widespread agreement from patient and professional organisations al...
Reconstructing the lineage of cells is central to understanding development and is now also an impor...
Discovering the genetic changes underlying species differences is a central goal in evolutionary gen...
Mammalian epidermis is maintained by stem cells that have the ability to self-renew and generate dau...
In adult skin epidermis and the epithelium lining the esophagus cells are constantly shed from the t...
Cell fate mapping techniques which can label clonal cell lineages are of importance because they all...
The classical model of epidermal proliferative units (EPUs) postulates that each EPU is composed of ...
Abstract Background Non-invasive autofluorescent repo...
Objective To labele MESPU35, a embryonic stem (ES) cell line derived from C57BL/6j mouse, with enhan...
The embryonic stem cell line derivation from nonpermissive mouse strains is a challenging and highly...
Transplantation studies and cell lineage analyses require the ability to explicitly distinguish morp...
A new method is developed for estimating rates of somatic mutation in vivo. The stop-enhanced green ...
Journal ArticleEmbryonic stem cells (ES) are pluripotent and may therefore serve as a source for the...
AbstractThe green fluorescent protein (GFP) is responsible for the green bioluminescence of the jell...
Advances in optical imaging modalities and the continued evolution of genetically-encoded fluorescen...
International audienceThere is a widespread agreement from patient and professional organisations al...
Reconstructing the lineage of cells is central to understanding development and is now also an impor...
Discovering the genetic changes underlying species differences is a central goal in evolutionary gen...
Mammalian epidermis is maintained by stem cells that have the ability to self-renew and generate dau...
In adult skin epidermis and the epithelium lining the esophagus cells are constantly shed from the t...