The tumor suppressor p53 is a transcription factor that regulates key processes. But, the outcomes of the p53 response go beyond its role as a nuclear transcription factor. Sirtuin (SIRT1) regulates p53 functions as transcription factor. At the same time, SIRT1 protects the genome under stress conditions. The link between p53 and SIRT1 responses is unique. Both regulate metabolism, stress signaling, cell survival, cell cycle control and genome stability. Recent studies have proposed cancer as a metabolic disease. This is due to the switch from aerobic to anaerobic metabolism during tumor development. Yet, the complex molecular circuits (in and out of the nucleus) of tumor progression remain elusive. In this review, we will focus on the inte...
SIRT1, an NAD+-dependent deacetylase, has been described in the literature as a major player in the ...
[eng] The Sirtuin family of NAD+-dependent enzymes plays a key role in the maintenance of genome int...
Sirtuin 3 (SIRT3), the major deacetylase in mitochondria, plays a crucial role in modulating oxygen ...
The tumor suppressor p53 is a transcription factor that regulates key processes. But, the outcomes o...
The NAD-dependent deacetylase SIRT1 is a nutrient-sensitive coordinator of stress-tolerance, multipl...
The tumor suppressor p53 is a well-charac-terized regulator of energy metabolism. p53 transcriptiona...
Abstract: SIRT1, an NAD+-dependent deacetylase, has been described in the literature as a major play...
Cancer research has been heavily geared towards genomic events in the development and progression of...
Sirtuins, commonly referred to as SIRTs, are a family of seven mammalian NAD+-dependent deacetylases...
Genomic instability and altered metabolism are key features of most cancers. Recent studies suggest ...
Sirtuins (SIRT), first described as nicotinamide adenine dinucleotide (NAD+)-dependent type III hist...
Sirtuins (SIRT), first described as nicotinamide adenine dinucleotide (NAD+)-dependent type III hist...
During the course of tumorigenesis, cells acquire a number of alterations that contribute to the acq...
The NAD-dependent deacetylase SIRT1 is a nutrient-sensitive coordinator of stress-tolerance, multipl...
International audienceBACKGROUND:The TP53 gene is one of the most commonly inactivated tumor suppres...
SIRT1, an NAD+-dependent deacetylase, has been described in the literature as a major player in the ...
[eng] The Sirtuin family of NAD+-dependent enzymes plays a key role in the maintenance of genome int...
Sirtuin 3 (SIRT3), the major deacetylase in mitochondria, plays a crucial role in modulating oxygen ...
The tumor suppressor p53 is a transcription factor that regulates key processes. But, the outcomes o...
The NAD-dependent deacetylase SIRT1 is a nutrient-sensitive coordinator of stress-tolerance, multipl...
The tumor suppressor p53 is a well-charac-terized regulator of energy metabolism. p53 transcriptiona...
Abstract: SIRT1, an NAD+-dependent deacetylase, has been described in the literature as a major play...
Cancer research has been heavily geared towards genomic events in the development and progression of...
Sirtuins, commonly referred to as SIRTs, are a family of seven mammalian NAD+-dependent deacetylases...
Genomic instability and altered metabolism are key features of most cancers. Recent studies suggest ...
Sirtuins (SIRT), first described as nicotinamide adenine dinucleotide (NAD+)-dependent type III hist...
Sirtuins (SIRT), first described as nicotinamide adenine dinucleotide (NAD+)-dependent type III hist...
During the course of tumorigenesis, cells acquire a number of alterations that contribute to the acq...
The NAD-dependent deacetylase SIRT1 is a nutrient-sensitive coordinator of stress-tolerance, multipl...
International audienceBACKGROUND:The TP53 gene is one of the most commonly inactivated tumor suppres...
SIRT1, an NAD+-dependent deacetylase, has been described in the literature as a major player in the ...
[eng] The Sirtuin family of NAD+-dependent enzymes plays a key role in the maintenance of genome int...
Sirtuin 3 (SIRT3), the major deacetylase in mitochondria, plays a crucial role in modulating oxygen ...