The ATP hydrolysis transition state of motor proteins is a weakly populated protein state that can be stabilized and investigated by replacing ATP with chemical mimics. We present atomic-level structural and dynamic insights on a state created by ADP aluminum fluoride binding to the bacterial DnaB helicase from Helicobacter pylori. We determined the positioning of the metal ion cofactor within the active site using electron paramagnetic resonance, and identified the protein protons coordinating to the phosphate groups of ADP and DNA using proton-detected 31P,1H solid-state nuclear magnetic resonance spectroscopy at fast magic-angle spinning > 100 kHz, as well as temperature-dependent proton chemical-shift values to prove their engagements i...
Cellular replication forks are universally powered by ring-shaped, hexameric helicases that encircle...
AAA+ ATPases constitute a large family of proteins that are involved in a plethora of cellular proce...
Isoelectronic metal fluoride transition state analogue (TSA) complexes, MgF3– and AlF4–, have proven...
DnaB helicases are motor proteins that couple ATP-hydrolysis to the loading of the protein onto DNA ...
Paramagnetic metal ions can be inserted into ATP-fueled motor proteins by exchanging the diamagnetic...
Nucleoside triphosphates (NTPs) are used as chemical energy source in a variety of cell systems. Str...
Nucleoside triphosphates (NTPs) are used as chemical energy source in a variety of cell systems. Str...
International audienceDnaB helicases are bacterial, ATP-driven enzymes that unwind double-stranded D...
Protein–nucleic acid interactions play important roles not only in energy‐providing reactions, such ...
International audienceWe here investigate the interactions between the DnaB helicase and the C-termi...
MutL is a multi-domain protein comprising an N-terminal ATPase domain (NTD) and C-terminal dimerizat...
ATPases of the AAA+ superfamily are large oligomeric molecular machines that remodel their substrate...
MutL is a multi-domain protein comprising an N-terminal ATPase domain (NTD) and C-terminal dimerizat...
Cellular replication forks are powered by ring-shaped, hexameric helicases that encircle and unwind ...
Cleavage of bacteriophage DNA by the Type III restriction-modification enzymes requires long-range i...
Cellular replication forks are universally powered by ring-shaped, hexameric helicases that encircle...
AAA+ ATPases constitute a large family of proteins that are involved in a plethora of cellular proce...
Isoelectronic metal fluoride transition state analogue (TSA) complexes, MgF3– and AlF4–, have proven...
DnaB helicases are motor proteins that couple ATP-hydrolysis to the loading of the protein onto DNA ...
Paramagnetic metal ions can be inserted into ATP-fueled motor proteins by exchanging the diamagnetic...
Nucleoside triphosphates (NTPs) are used as chemical energy source in a variety of cell systems. Str...
Nucleoside triphosphates (NTPs) are used as chemical energy source in a variety of cell systems. Str...
International audienceDnaB helicases are bacterial, ATP-driven enzymes that unwind double-stranded D...
Protein–nucleic acid interactions play important roles not only in energy‐providing reactions, such ...
International audienceWe here investigate the interactions between the DnaB helicase and the C-termi...
MutL is a multi-domain protein comprising an N-terminal ATPase domain (NTD) and C-terminal dimerizat...
ATPases of the AAA+ superfamily are large oligomeric molecular machines that remodel their substrate...
MutL is a multi-domain protein comprising an N-terminal ATPase domain (NTD) and C-terminal dimerizat...
Cellular replication forks are powered by ring-shaped, hexameric helicases that encircle and unwind ...
Cleavage of bacteriophage DNA by the Type III restriction-modification enzymes requires long-range i...
Cellular replication forks are universally powered by ring-shaped, hexameric helicases that encircle...
AAA+ ATPases constitute a large family of proteins that are involved in a plethora of cellular proce...
Isoelectronic metal fluoride transition state analogue (TSA) complexes, MgF3– and AlF4–, have proven...