Runt-related (RUNX) transcription factors are evolutionarily conserved regulators of cell proliferation, differentiation and stem cell maintenance. They are critical for the correct development and function of a variety of human tissues, including during haematopoiesis. RUNX genes regulate various aspects of proliferation control, stem cell maintenance, lineage commitment and regulation of differentiation; disruptions in the correct function of RUNX genes have been associated with human pathologies, most prominently cancer. Because of the high context dependency and partial redundancy of vertebrate RUNX genes, invertebrate model systems have been studied in the hope of finding an ancestral function. Here we review the progress of these stud...
In this report, we demonstrate that C. elegans mab-2 mutants have defects in the development of a ma...
Abstract Background Runx proteins are developmentally important metazoan transcription factors that ...
Summary In animal development following the initial cleavage stage of embryogenesis, the cell cycle ...
Runx family transcription factors have risen to prominence over the last few years because of the in...
AbstractRunx family transcription factors have risen to prominence over the last few years because o...
The Runt homology domain (Runx) defines a metazoan family of sequence-specific transcriptional regul...
Runt-homologous molecules are characterized by their DNA binding runt-domain which is highly conserv...
Runt-homologous molecules are characterized by their DNA binding runt-domain which is highly conserv...
BACKGROUND. Members of the Runx family of transcriptional regulators, which bind DNA as heterodimers...
The Runt homology domain (Runx) defines a metazoan family of sequence-specific transcriptional regul...
Runt-homologous molecules are characterized by their DNA binding runt-domain which is highly conserv...
Although many critical roles of the RUNX family proteins have already been identified, little attent...
The stem cell-like seam cells of the nematode, Caenorhabditis elegans, represent a tractable and pow...
The stem cell-like seam cells of the nematode, Caenorhabditis elegans, represent a tractable and pow...
The stem cell-like seam cells of the nematode, Caenorhabditis elegans, represent a tractable and pow...
In this report, we demonstrate that C. elegans mab-2 mutants have defects in the development of a ma...
Abstract Background Runx proteins are developmentally important metazoan transcription factors that ...
Summary In animal development following the initial cleavage stage of embryogenesis, the cell cycle ...
Runx family transcription factors have risen to prominence over the last few years because of the in...
AbstractRunx family transcription factors have risen to prominence over the last few years because o...
The Runt homology domain (Runx) defines a metazoan family of sequence-specific transcriptional regul...
Runt-homologous molecules are characterized by their DNA binding runt-domain which is highly conserv...
Runt-homologous molecules are characterized by their DNA binding runt-domain which is highly conserv...
BACKGROUND. Members of the Runx family of transcriptional regulators, which bind DNA as heterodimers...
The Runt homology domain (Runx) defines a metazoan family of sequence-specific transcriptional regul...
Runt-homologous molecules are characterized by their DNA binding runt-domain which is highly conserv...
Although many critical roles of the RUNX family proteins have already been identified, little attent...
The stem cell-like seam cells of the nematode, Caenorhabditis elegans, represent a tractable and pow...
The stem cell-like seam cells of the nematode, Caenorhabditis elegans, represent a tractable and pow...
The stem cell-like seam cells of the nematode, Caenorhabditis elegans, represent a tractable and pow...
In this report, we demonstrate that C. elegans mab-2 mutants have defects in the development of a ma...
Abstract Background Runx proteins are developmentally important metazoan transcription factors that ...
Summary In animal development following the initial cleavage stage of embryogenesis, the cell cycle ...