SummaryThe tetrameric transcription factors p53, p63, and p73 evolved from a common ancestor and play key roles in tumor suppression and development. Surprisingly, p63 and p73 require a second helix in their tetramerization domain for the formation of stable tetramers that is absent in human p53, raising questions about the evolutionary processes leading to diversification. Here we determined the crystal structure of the zebrafish p53 tetramerization domain, which contains a second helix, reminiscent of p63 and p73, combined with p53-like features. Through comprehensive phylogenetic analyses, we systematically traced the evolution of vertebrate p53 family oligomerization domains back to the beginning of multicellular life. We provide eviden...
RIGHTS : This article is licensed under the BioMed Central licence at http://www.biomedcentral.com/...
AbstractThe tetrameric tumor suppressor p53 plays a pivotal role in the control of the cell cycle an...
<div><p>The p53 family of genes and their protein products, namely, p53, p63 and p73, have over one ...
SummaryThe tetrameric transcription factors p53, p63, and p73 evolved from a common ancestor and pla...
AbstractThe p53 family of transcription factors—comprising p53, p63 and p73—plays an important role ...
Background: The p53 signalling pathway, which controls cell fate, has been extensively studied due t...
<div><p>Conformational and functional flexibility promote protein evolvability. High evolvability al...
Background: The p53 signalling pathway, which controls cell fate, has been extensively studied due t...
Conformational and functional flexibility promote protein evolvability. High evolvability allows rel...
Conformational and functional flexibility promote protein evolvability. High evolvability allows rel...
Abstract Background The p53 signalling pathway, which controls cell fate, has been extensively studi...
The identification of many homologs and paralogs of the most famous tumor suppressor, p53, has expan...
p73 and p63, the two ancestral members of the p53 family, are involved in neurogenesis, epithelial s...
p73 and p63, the two ancestral members of the p53 family, are involved in neurogenesis, epithelial s...
AbstractThe p53 family of transcription factors—comprising p53, p63 and p73—plays an important role ...
RIGHTS : This article is licensed under the BioMed Central licence at http://www.biomedcentral.com/...
AbstractThe tetrameric tumor suppressor p53 plays a pivotal role in the control of the cell cycle an...
<div><p>The p53 family of genes and their protein products, namely, p53, p63 and p73, have over one ...
SummaryThe tetrameric transcription factors p53, p63, and p73 evolved from a common ancestor and pla...
AbstractThe p53 family of transcription factors—comprising p53, p63 and p73—plays an important role ...
Background: The p53 signalling pathway, which controls cell fate, has been extensively studied due t...
<div><p>Conformational and functional flexibility promote protein evolvability. High evolvability al...
Background: The p53 signalling pathway, which controls cell fate, has been extensively studied due t...
Conformational and functional flexibility promote protein evolvability. High evolvability allows rel...
Conformational and functional flexibility promote protein evolvability. High evolvability allows rel...
Abstract Background The p53 signalling pathway, which controls cell fate, has been extensively studi...
The identification of many homologs and paralogs of the most famous tumor suppressor, p53, has expan...
p73 and p63, the two ancestral members of the p53 family, are involved in neurogenesis, epithelial s...
p73 and p63, the two ancestral members of the p53 family, are involved in neurogenesis, epithelial s...
AbstractThe p53 family of transcription factors—comprising p53, p63 and p73—plays an important role ...
RIGHTS : This article is licensed under the BioMed Central licence at http://www.biomedcentral.com/...
AbstractThe tetrameric tumor suppressor p53 plays a pivotal role in the control of the cell cycle an...
<div><p>The p53 family of genes and their protein products, namely, p53, p63 and p73, have over one ...