SummarySegregation of the R1 plasmid in bacteria relies on ParM, an actin homolog that segregates plasmids by switching between cycles of polymerization and depolymerization. We find similar polymerization kinetics and stability in the presence of either ATP or GTP and a 10-fold affinity preference for ATP over GTP. We used electron cryo-microscopy to evaluate the heterogeneity within ParM filaments. In addition to variable twist, ParM has variable axial rise, and both parameters are coupled. Subunits in the same ParM filaments can exist in two different structural states, with the nucleotide-binding cleft closed or open, and the bound nucleotide biases the distribution of states. The interface between protomers is different between these s...
The R1 plasmid employs ATP-driven polymerisation of the actin-like protein ParM to move newly replic...
Although the mechanism of DNA segregation in Eukaryotes has been known for many decades, Prokaryotic...
Although the mechanism of DNA segregation in Eukaryotes has been known for many decades, Prokaryotic...
SummarySegregation of the R1 plasmid in bacteria relies on ParM, an actin homolog that segregates pl...
The ParM protein, encoded by the parMRC locus from plasmid R1, is the best-characterized actin homol...
AbstractThe actin-like protein ParM forms the cytomotive filament of the ParMRC system, a type II pl...
AbstractThe actin-like protein ParM forms the cytomotive filament of the ParMRC system, a type II pl...
Bacterial cytoskeletal proteins participate in a variety of processes, including cell division and D...
Dynamic instability—the switching of a two-state polymer between phases of steady elongation and rap...
Bacterial cytoskeletal proteins participate in a variety of processes, including cell division and D...
Active segregation of E. coli low-copy number plasmid R1 involves formation of a bipolar spindle mad...
During eukaryotic cell division, the DNA molecules are partitioned to opposite poles of the cell, en...
During eukaryotic cell division, the DNA molecules are partitioned to opposite poles of the cell, en...
D ow nloaded from 2 Bacterial cytoskeletal proteins participate in a variety of processes, including...
The R1 plasmid employs ATP-driven polymerisation of the actin-like protein ParM to move newly replic...
The R1 plasmid employs ATP-driven polymerisation of the actin-like protein ParM to move newly replic...
Although the mechanism of DNA segregation in Eukaryotes has been known for many decades, Prokaryotic...
Although the mechanism of DNA segregation in Eukaryotes has been known for many decades, Prokaryotic...
SummarySegregation of the R1 plasmid in bacteria relies on ParM, an actin homolog that segregates pl...
The ParM protein, encoded by the parMRC locus from plasmid R1, is the best-characterized actin homol...
AbstractThe actin-like protein ParM forms the cytomotive filament of the ParMRC system, a type II pl...
AbstractThe actin-like protein ParM forms the cytomotive filament of the ParMRC system, a type II pl...
Bacterial cytoskeletal proteins participate in a variety of processes, including cell division and D...
Dynamic instability—the switching of a two-state polymer between phases of steady elongation and rap...
Bacterial cytoskeletal proteins participate in a variety of processes, including cell division and D...
Active segregation of E. coli low-copy number plasmid R1 involves formation of a bipolar spindle mad...
During eukaryotic cell division, the DNA molecules are partitioned to opposite poles of the cell, en...
During eukaryotic cell division, the DNA molecules are partitioned to opposite poles of the cell, en...
D ow nloaded from 2 Bacterial cytoskeletal proteins participate in a variety of processes, including...
The R1 plasmid employs ATP-driven polymerisation of the actin-like protein ParM to move newly replic...
The R1 plasmid employs ATP-driven polymerisation of the actin-like protein ParM to move newly replic...
Although the mechanism of DNA segregation in Eukaryotes has been known for many decades, Prokaryotic...
Although the mechanism of DNA segregation in Eukaryotes has been known for many decades, Prokaryotic...