Transcription factor p53 is the most commonly altered gene in human cancer. As a redox-active protein in direct contact with DNA, p53 can directly sense oxidative stress through DNA-mediated charge transport. Electron hole transport occurs over long distances through the π-stacked bases and leads to the oxidative dissociation of p53. The extent of protein dissociation depends upon the redox potential of the DNA in direct contact with each p53 monomer. The DNA sequence dependence of p53 oxidative dissociation was examined by electrophoretic mobility shift assays using oligonucleotides containing both synthetic and human p53 consensus sequences with an appended photooxidant, anthraquinone. Greater p53 dissociation is observed from sequences c...
Transcription factor p53 plays a critical role in the cellular response to stress stimuli. We have s...
Many experiments have now shown that double helical DNA can serve as a conduit for efficient charge ...
Many experiments have now shown that double helical DNA can serve as a conduit for efficient charge ...
Transcription factor p53 plays a crit. role in the cellular response to stress stimuli. Previous stu...
Transcription factor p53 plays a crit. role in the cellular response to stress stimuli. Previous stu...
Transcription factor p53 plays a crit. role in the cellular response to stress stimuli. Previous stu...
Transcription factor p53 controls many cellular processes in response to cellular stress. As a redox...
Transcription factor p53 controls many cellular processes in response to cellular stress. As a redox...
Transcription factor p53 controls many cellular processes in response to cellular stress. As a redox...
Charge transport (CT) through the DNA base pairs provides a means to promote redox reactions at a re...
The global transcription factor p53 controls many cellular processes, including the cellular respons...
Transcription factor p53 plays a critical role in the cellular response to stress stimuli. We have s...
Transcription factor p53 plays a critical role in the cellular response to stress stimuli. We have s...
ABSTRACT: Transcription factor p53 plays a critical role in the cellular response to stress stimuli....
Transcription factor p53 plays a critical role in the cellular response to stress stimuli. We have s...
Transcription factor p53 plays a critical role in the cellular response to stress stimuli. We have s...
Many experiments have now shown that double helical DNA can serve as a conduit for efficient charge ...
Many experiments have now shown that double helical DNA can serve as a conduit for efficient charge ...
Transcription factor p53 plays a crit. role in the cellular response to stress stimuli. Previous stu...
Transcription factor p53 plays a crit. role in the cellular response to stress stimuli. Previous stu...
Transcription factor p53 plays a crit. role in the cellular response to stress stimuli. Previous stu...
Transcription factor p53 controls many cellular processes in response to cellular stress. As a redox...
Transcription factor p53 controls many cellular processes in response to cellular stress. As a redox...
Transcription factor p53 controls many cellular processes in response to cellular stress. As a redox...
Charge transport (CT) through the DNA base pairs provides a means to promote redox reactions at a re...
The global transcription factor p53 controls many cellular processes, including the cellular respons...
Transcription factor p53 plays a critical role in the cellular response to stress stimuli. We have s...
Transcription factor p53 plays a critical role in the cellular response to stress stimuli. We have s...
ABSTRACT: Transcription factor p53 plays a critical role in the cellular response to stress stimuli....
Transcription factor p53 plays a critical role in the cellular response to stress stimuli. We have s...
Transcription factor p53 plays a critical role in the cellular response to stress stimuli. We have s...
Many experiments have now shown that double helical DNA can serve as a conduit for efficient charge ...
Many experiments have now shown that double helical DNA can serve as a conduit for efficient charge ...