ATAD2 is an evolutionarily conserved but poorly characterized factor that bears different types of func¬tional domains: an AAA ATPase domain and a bromodomain (BRD). ATAD2 is normally highly ex¬pressed in male germ cells and in embryonic stem cells (ESC), however the overexpression of this protein has been detected in a large variety of independent cancers. ATAD2 is proposed to act as a co-activator of androgen and estrogen receptors and in addition, this protein also seems to act as a co-factor for Myc oncogene and plays a role in the pRb/E2F pathway. Moreover, the overexpression of ATAD2 predicts poor prognosis in lung and breast cancers. All of these characteristics make ATAD2 a valuable prognosis biomarker and a promising therapeutic ta...
Taking advantage of the evolutionary conserved nature of ATAD2, we report here a series of parallel ...
Cancer progression results from cumulative epigenetic changes that drive and maintain the malignant ...
ATPase family AAA domain-containing 2 (ATAD2) has been identified as a critical modulator involved i...
ATAD2 is an evolutionarily conserved but poorly characterized factor that bears different types of f...
ATAD2 est un facteur très conservé mais peu caractérisé qui possède différents domaines fonctionnels...
Although the conserved AAA ATPase and bromodomain factor, ATAD2, has been described as a transcripti...
International audienceCancer cells frequently express genes normally active in male germ cells. ATAD...
During spermatogenesis, i-e maturation of spermatozoa, occurs a unique event: the classical structur...
Epigenomic patterns play important roles in cell type specification marking genomic regulatory eleme...
ATAD2 (ATPase family AAA domain-containing protein 2) is a chromatin regulator harboring an AAA+ ATP...
Preventing histone recognition by bromodomains emerges as an attractive therapeutic approach in canc...
Open access article. Creative Commons Attribution 4.0 International license (CC BY 4.0) appliesThe ...
The ATPase family, AAA domain-containing protein 2 (ATAD2) has a C-terminal bromodomain, which funct...
Taking advantage of the evolutionary conserved nature of ATAD2, we report here a series of parallel ...
Cancer progression results from cumulative epigenetic changes that drive and maintain the malignant ...
ATPase family AAA domain-containing 2 (ATAD2) has been identified as a critical modulator involved i...
ATAD2 is an evolutionarily conserved but poorly characterized factor that bears different types of f...
ATAD2 est un facteur très conservé mais peu caractérisé qui possède différents domaines fonctionnels...
Although the conserved AAA ATPase and bromodomain factor, ATAD2, has been described as a transcripti...
International audienceCancer cells frequently express genes normally active in male germ cells. ATAD...
During spermatogenesis, i-e maturation of spermatozoa, occurs a unique event: the classical structur...
Epigenomic patterns play important roles in cell type specification marking genomic regulatory eleme...
ATAD2 (ATPase family AAA domain-containing protein 2) is a chromatin regulator harboring an AAA+ ATP...
Preventing histone recognition by bromodomains emerges as an attractive therapeutic approach in canc...
Open access article. Creative Commons Attribution 4.0 International license (CC BY 4.0) appliesThe ...
The ATPase family, AAA domain-containing protein 2 (ATAD2) has a C-terminal bromodomain, which funct...
Taking advantage of the evolutionary conserved nature of ATAD2, we report here a series of parallel ...
Cancer progression results from cumulative epigenetic changes that drive and maintain the malignant ...
ATPase family AAA domain-containing 2 (ATAD2) has been identified as a critical modulator involved i...