Author:
Chaney Matthew,Grande Ricardo,Wigneshweraraj Siva R.,Cannon Wendy,Casaz Paul,Gallegos Maria-Trinidad,Schumacher Jorg,Jones Susan,Elderkin Sarah,Dago Angel Ernesto,Morett Enrique,Buck Martin
Abstract
Conformational changes in sigma 54 (ς54) and ς54-holoenzyme depend on nucleotide hydrolysis by an activator. We now show that ς54 and its holoenzyme bind to the central ATP-hydrolyzing domains of the transcriptional activators PspF and NifA in the presence of ADP–aluminum fluoride, an analog of ATP in the transition state for hydrolysis. Direct binding of ς54 Region I to activator in the presence of ADP–aluminum fluoride was shown and inferred from in vivo suppression genetics. Energy transduction appears to occur through activator contacts to ς54 Region I. ADP–aluminum fluoride-dependent interactions and consideration of other AAA+ proteins provide insight into activator mechanochemical action.
Publisher
Cold Spring Harbor Laboratory
Subject
Developmental Biology,Genetics
Cited by
118 articles.
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