We present an overview of Runx involvement in regulatory mechanisms that are requisite for fidelity of bone cell growth and differentiation, as well as for skeletal homeostasis and the structural and functional integrity of skeletal tissue. Runx-mediated control is addressed from the perspective of support for biological parameters of skeletal gene expression. We review recent findings that are consistent with an active role for Runx proteins as scaffolds for integration, organization and combinatorial assembly of nucleic acids and regulatory factors within the three-dimensional context of nuclear architecture
The Runx family of transcription factors performs an essential role in animal development by control...
Runt-related transcription factor 2 (RUNX2) is a transcription factor closely associated with the os...
The differentiation of osteoblasts from mesenchymal precursors requires a series of cell fate decisi...
Runx2/Cbfa/AML3 is a member of the runt homology domain family of transcription factors, essential f...
Development of the osteoblast phenotype requires transcriptional mechanisms that regulate induction ...
Formation of skeletal elements during embryogenesis and the dynamic remodeling of bone in the adult ...
We present an overview of the concepts of tissue-specific transcriptional control mechanisms essenti...
Key components of the basal transcription machinery and several tissue-specific transcription factor...
RUNX2 is a multifunctional transcription factor that controls skeletal development by regulating the...
RUNX2 is a multifunctional transcription factor that controls skeletal development by regulating the...
Runt-related transcription factor 2 (RUNX2) is a transcription factor closely associated with the os...
The three mammalian Runt homology domain transcription factors (Runx1, Runx2, Runx3) support biologi...
ABSTRACT: The differentiation of osteoblasts from mesenchymal precur-sors requires a series of cell ...
RUNX (AML/CBFA/PEBP2) transcription factors serve as paradigms for obligatory relationships between ...
Runt-related transcription factor 2 (Runx2) controls lineage commitment, proliferation, and anabolic...
The Runx family of transcription factors performs an essential role in animal development by control...
Runt-related transcription factor 2 (RUNX2) is a transcription factor closely associated with the os...
The differentiation of osteoblasts from mesenchymal precursors requires a series of cell fate decisi...
Runx2/Cbfa/AML3 is a member of the runt homology domain family of transcription factors, essential f...
Development of the osteoblast phenotype requires transcriptional mechanisms that regulate induction ...
Formation of skeletal elements during embryogenesis and the dynamic remodeling of bone in the adult ...
We present an overview of the concepts of tissue-specific transcriptional control mechanisms essenti...
Key components of the basal transcription machinery and several tissue-specific transcription factor...
RUNX2 is a multifunctional transcription factor that controls skeletal development by regulating the...
RUNX2 is a multifunctional transcription factor that controls skeletal development by regulating the...
Runt-related transcription factor 2 (RUNX2) is a transcription factor closely associated with the os...
The three mammalian Runt homology domain transcription factors (Runx1, Runx2, Runx3) support biologi...
ABSTRACT: The differentiation of osteoblasts from mesenchymal precur-sors requires a series of cell ...
RUNX (AML/CBFA/PEBP2) transcription factors serve as paradigms for obligatory relationships between ...
Runt-related transcription factor 2 (Runx2) controls lineage commitment, proliferation, and anabolic...
The Runx family of transcription factors performs an essential role in animal development by control...
Runt-related transcription factor 2 (RUNX2) is a transcription factor closely associated with the os...
The differentiation of osteoblasts from mesenchymal precursors requires a series of cell fate decisi...