Key nuclear processes in eukaryotes, including DNA replication, repair, and gene regulation, require extensive chromatin remodeling catalyzed by energy-consuming enzymes. It remains unclear how the ATP demands of such processes are met in response to rapid stimuli. We analyzed this question in the context of the massive gene regulation changes induced by progestins in breast cancer cells and found that ATP is generated in the cell nucleus via the hydrolysis of poly(ADP-ribose) to ADP-ribose. In the presence of pyrophosphate, ADP-ribose is used by the pyrophosphatase NUDIX5 to generate nuclear ATP. The nuclear source of ATP is essential for hormone-induced chromatin remodeling, transcriptional regulation, and cell proliferation
International audienceChromatin relaxation is one of the earliest cellular responses to DNA damage. ...
It has long been known that the major function of NAD+ is as an electron carrier in various biologic...
AbstractThe H-bonded complex of ATP with Arg 34 of Zn2+ finger I of poly-ADP-ribose polymerase-1 (PA...
Key nuclear processes in eukaryotes, including DNA replication, repair, and gene regulation, require...
The packaging of genetic information in form of chromatin within the nucleus provides cells with the...
The growth of cancer cells as oncospheres in three-dimensional (3D) culture provides a robust cell m...
AbstractMembers of the ATP-dependent class of chromatin remodeling enzymes are found in all eukaryot...
Misregulation of the processes controlling eukaryotic gene expression can result in disease. Gene ex...
Chromatin remodelling is the ATP-dependent change in nucleosome organisation driven by Snf2 family A...
Chromatin remodelling is the ATP-dependent change in nucleosome organisation driven by Snf2 family A...
ATP-dependent nucleosome-remodeling enzymes and covalent modifiers of chromatin set the functional s...
With a diverse network of substrates, NUDIX hydrolases have emerged as a key family of nucleotide-me...
ATP-dependent chromatin remodeling enzymes, such as SWI/SNF, hydrolyze thousands of ATPs to regulate...
Aneuploidy – having an unbalanced genome – is poorly tolerated at the cellular and organismal level...
SummaryPoly(ADP-ribose) polymerases (PARPs) catalyze poly(ADP-ribose) addition onto proteins, an imp...
International audienceChromatin relaxation is one of the earliest cellular responses to DNA damage. ...
It has long been known that the major function of NAD+ is as an electron carrier in various biologic...
AbstractThe H-bonded complex of ATP with Arg 34 of Zn2+ finger I of poly-ADP-ribose polymerase-1 (PA...
Key nuclear processes in eukaryotes, including DNA replication, repair, and gene regulation, require...
The packaging of genetic information in form of chromatin within the nucleus provides cells with the...
The growth of cancer cells as oncospheres in three-dimensional (3D) culture provides a robust cell m...
AbstractMembers of the ATP-dependent class of chromatin remodeling enzymes are found in all eukaryot...
Misregulation of the processes controlling eukaryotic gene expression can result in disease. Gene ex...
Chromatin remodelling is the ATP-dependent change in nucleosome organisation driven by Snf2 family A...
Chromatin remodelling is the ATP-dependent change in nucleosome organisation driven by Snf2 family A...
ATP-dependent nucleosome-remodeling enzymes and covalent modifiers of chromatin set the functional s...
With a diverse network of substrates, NUDIX hydrolases have emerged as a key family of nucleotide-me...
ATP-dependent chromatin remodeling enzymes, such as SWI/SNF, hydrolyze thousands of ATPs to regulate...
Aneuploidy – having an unbalanced genome – is poorly tolerated at the cellular and organismal level...
SummaryPoly(ADP-ribose) polymerases (PARPs) catalyze poly(ADP-ribose) addition onto proteins, an imp...
International audienceChromatin relaxation is one of the earliest cellular responses to DNA damage. ...
It has long been known that the major function of NAD+ is as an electron carrier in various biologic...
AbstractThe H-bonded complex of ATP with Arg 34 of Zn2+ finger I of poly-ADP-ribose polymerase-1 (PA...