The tumor suppressor gene p53 is involved in a variety of cellular activities such as cellular stress responses, cell cycle regulation and differentiation. In our previous studies we have shown p53’s transcription activating role to be important in osteoblast differentiation. There is still a debate in the literature as to whether p53 inhibits or promotes differentiation. We have found p53 heterozygous mice to show a p53 dependency on some bone marker gene expression that is absent in knockout mice. Mice heterozygous for p53 also show a higher incidence of osteosarcomas than p53 knockout mice. This suggests that p53 is able to modify the environment within osteoblasts. In this study we compare changes in gene expression resulting after eith...
Cell stress and DNA damage activate the tumor suppressor p53, triggering transcriptional activation ...
The key role of p53 as a tumour suppressor is widely acknowledged and based on many observations tha...
Summary: Satellite cells are adult muscle stem cells residing in a specialized niche that regulates ...
The tumor suppressor gene p53 is involved in a variety of cellular activities such as cellular stres...
The tumor suppressor p53 is an important regulator that controls various cellular networks, includin...
It has been shown that p53 has a critical role in the differentiation and functionality of various m...
Abstract: p53 plays a pivotal role in controlling the differentiation of mesenchymal stem cells (MSC...
An important role for the p53 gene in osteogenic sarcomas has been imputed by identification of soma...
The transcription factor p53 has been shown to control the differentiation process of the mesenchyma...
The p53 tumour suppressor is the most frequently mutated gene in human cancer. This transcription fa...
Studies in mice have yielded invaluable insight into our understanding of the p53 pathway. Mouse mod...
Mesenchymal stem cells (MSC) have been extensively studied and gained wide popularity due to their t...
Replicative senescence causes a reduced osteogenic differentiation potential of senescent dental fol...
The role that the p53 tumor suppressor gene product plays in cellular differentiation remains contro...
The osteoblast generation from Mesenchymal stem cells (MSCs) is tightly coordinated by transcription...
Cell stress and DNA damage activate the tumor suppressor p53, triggering transcriptional activation ...
The key role of p53 as a tumour suppressor is widely acknowledged and based on many observations tha...
Summary: Satellite cells are adult muscle stem cells residing in a specialized niche that regulates ...
The tumor suppressor gene p53 is involved in a variety of cellular activities such as cellular stres...
The tumor suppressor p53 is an important regulator that controls various cellular networks, includin...
It has been shown that p53 has a critical role in the differentiation and functionality of various m...
Abstract: p53 plays a pivotal role in controlling the differentiation of mesenchymal stem cells (MSC...
An important role for the p53 gene in osteogenic sarcomas has been imputed by identification of soma...
The transcription factor p53 has been shown to control the differentiation process of the mesenchyma...
The p53 tumour suppressor is the most frequently mutated gene in human cancer. This transcription fa...
Studies in mice have yielded invaluable insight into our understanding of the p53 pathway. Mouse mod...
Mesenchymal stem cells (MSC) have been extensively studied and gained wide popularity due to their t...
Replicative senescence causes a reduced osteogenic differentiation potential of senescent dental fol...
The role that the p53 tumor suppressor gene product plays in cellular differentiation remains contro...
The osteoblast generation from Mesenchymal stem cells (MSCs) is tightly coordinated by transcription...
Cell stress and DNA damage activate the tumor suppressor p53, triggering transcriptional activation ...
The key role of p53 as a tumour suppressor is widely acknowledged and based on many observations tha...
Summary: Satellite cells are adult muscle stem cells residing in a specialized niche that regulates ...