Journal of Biological Chemistry · 1990 · 128 citations · 56 references
Dna Strand ExchangeProtein AssemblyMolecular BiologyProtein RefoldingReca Protein FilamentsReca Protein Association/dissociationReca Nucleoprotein FilamentsMulti-protein AssemblyMacromolecular AssembliesBiophysicsStrand Exchange ReactionOpposite Filament EndsBiochemistryMacromolecular MachineDna ReplicationStructural BiologyNatural SciencesRecombination DynamicMedicine
RecA protein primarily associates with and dissociates from opposite ends of nucleoprotein filaments formed on linear duplex DNA. RecA nucleoprotein filaments that are hydrolyzing ATP therefore engage in a dynamic process under some conditions that has some of the properties of treadmilling. We have also investigated whether the net polymerization of recA protein at one end of the filament and/or a net depolymerization at the other end drives unidirectional strand exchange. There is no demonstrable correlation between recA protein association/dissociation and the strand exchange reaction. RecA protein-mediated DNA strand exchange is affected minimally by changes in reaction conditions (dilution, pH shift, or addition of small amounts of adenosine-5'-O-(3-thiotriphosphate) that have large and demonstrable effects on recA protein association, dissociation, or both. Rather than driving strand exchange, these assembly and disassembly processes may simply represent the mechanism by which recA nucleoprotein filaments are recycled in the cell.
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Head to tail polymerization of actin
Albrecht Wegner · Journal of Molecular Biology · 1976 · 698 citations