AbstractWe have investigated the activation of FtsZ by monovalent cations. FtsZ polymerization was dependent on the concentrations of protein and monovalent salts, and was accompanied by the uptake of a single ion per monomer added. The affinity and the specificity for the cation were low. Potassium, ammonium, rubidium or sodium activated FtsZ to different extents. Electron microscopy showed that polymers formed with either rubidium, or potassium, were very similar, as were their nucleotide turnover rates. The GTPase activity was lower with rubidium than with potassium, indicating that nucleotide exchange is independent of nucleotide hydrolysis. Control of polymerization by binding of a low affinity cation might govern the dynamic behavior ...
The prokaryotic tubulin homologue FtsZ polymerizes in vitro in a nucleotide dependent fashion. Here ...
FtsZ polymerizes in a ring-like structure at mid cell to initiate cell division in <i>Escherichia co...
AbstractFtsZ is the major cytoskeletal protein operating in bacterial cell division. FtsZ assembles ...
AbstractWe have investigated the activation of FtsZ by monovalent cations. FtsZ polymerization was d...
AbstractStable, more than 98% nucleotide-free apo-FtsZ was prepared from purified Methanococcus jann...
AbstractFtsZ is a major protein in bacterial cytokinesis that polymerizes into single filaments. A d...
AbstractThe prokaryotic tubulin homologue FtsZ polymerizes in vitro in a nucleotide dependent fashio...
AbstractBacteria and archaea usually divide symmetrically by formation of a septum in the middle of ...
There is a growing body of evidence that bacterial cell division is an intricate coordinated process...
AbstractWe have analyzed the substrate kinetics of the GTPase activity of FtsZ and the effects of tw...
During bacterial cell division, the essential protein FtsZ assembles in the middle of the cell to fo...
FtsZ polymerizes in a ring-like structure at mid cell to initiate cell division in Escherichia coli....
During bacterial cell division, the essential protein FtsZ assembles in the middle of the cell to fo...
AbstractFtsZ, the prokaryotic ortholog of tubulin, assembles into polymers in the bacterial division...
Cytokinesis in bacteria depends upon the contractile Z ring, which is composed of dynamic polymers o...
The prokaryotic tubulin homologue FtsZ polymerizes in vitro in a nucleotide dependent fashion. Here ...
FtsZ polymerizes in a ring-like structure at mid cell to initiate cell division in <i>Escherichia co...
AbstractFtsZ is the major cytoskeletal protein operating in bacterial cell division. FtsZ assembles ...
AbstractWe have investigated the activation of FtsZ by monovalent cations. FtsZ polymerization was d...
AbstractStable, more than 98% nucleotide-free apo-FtsZ was prepared from purified Methanococcus jann...
AbstractFtsZ is a major protein in bacterial cytokinesis that polymerizes into single filaments. A d...
AbstractThe prokaryotic tubulin homologue FtsZ polymerizes in vitro in a nucleotide dependent fashio...
AbstractBacteria and archaea usually divide symmetrically by formation of a septum in the middle of ...
There is a growing body of evidence that bacterial cell division is an intricate coordinated process...
AbstractWe have analyzed the substrate kinetics of the GTPase activity of FtsZ and the effects of tw...
During bacterial cell division, the essential protein FtsZ assembles in the middle of the cell to fo...
FtsZ polymerizes in a ring-like structure at mid cell to initiate cell division in Escherichia coli....
During bacterial cell division, the essential protein FtsZ assembles in the middle of the cell to fo...
AbstractFtsZ, the prokaryotic ortholog of tubulin, assembles into polymers in the bacterial division...
Cytokinesis in bacteria depends upon the contractile Z ring, which is composed of dynamic polymers o...
The prokaryotic tubulin homologue FtsZ polymerizes in vitro in a nucleotide dependent fashion. Here ...
FtsZ polymerizes in a ring-like structure at mid cell to initiate cell division in <i>Escherichia co...
AbstractFtsZ is the major cytoskeletal protein operating in bacterial cell division. FtsZ assembles ...