AbstractHere, we review recent progress that yields fundamental new insight into the molecular mechanisms behind plasmid and chromosome segregation in prokaryotic cells. In particular, we describe how prokaryotic actin homologs form mitotic machineries that segregate DNA before cell division. Thus, the ParM protein of plasmid R1 forms F actin-like filaments that separate and move plasmid DNA from mid-cell to the cell poles. Evidence from three different laboratories indicate that the morphogenetic MreB protein may be involved in segregation of the bacterial chromosome
AbstractWe have investigated DNA segregation in E. coli by inserting multiple lac operator sequences...
The ParMRC plasmid partitioning apparatus is one of the best characterized systems for bacterial DNA...
AbstractDespite the power of bacterial genetics, the prokaryotic cell cycle has remained poorly unde...
AbstractHere, we review recent progress that yields fundamental new insight into the molecular mecha...
In prokaryotes, DNA can be segregated by three different types of cytoskeletal filaments. The best-u...
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...
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...
In prokaryotes, DNA can be segregated by three different types of cytoskeletal filaments. The best-u...
Bacterial plasmid and chromosome segregation systems ensure that genetic material is efficiently tra...
SummaryFaithful chromosome segregation is an essential component of cell division in all organisms. ...
Remarkably little is known about how bacterial chromo-somes and their plasmids are partitioned to da...
Bacterial cytoskeletal proteins participate in a variety of processes, including cell division and D...
Bacterial cytoskeletal proteins participate in a variety of processes, including cell division and D...
AbstractWe have investigated DNA segregation in E. coli by inserting multiple lac operator sequences...
The ParMRC plasmid partitioning apparatus is one of the best characterized systems for bacterial DNA...
AbstractDespite the power of bacterial genetics, the prokaryotic cell cycle has remained poorly unde...
AbstractHere, we review recent progress that yields fundamental new insight into the molecular mecha...
In prokaryotes, DNA can be segregated by three different types of cytoskeletal filaments. The best-u...
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...
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...
In prokaryotes, DNA can be segregated by three different types of cytoskeletal filaments. The best-u...
Bacterial plasmid and chromosome segregation systems ensure that genetic material is efficiently tra...
SummaryFaithful chromosome segregation is an essential component of cell division in all organisms. ...
Remarkably little is known about how bacterial chromo-somes and their plasmids are partitioned to da...
Bacterial cytoskeletal proteins participate in a variety of processes, including cell division and D...
Bacterial cytoskeletal proteins participate in a variety of processes, including cell division and D...
AbstractWe have investigated DNA segregation in E. coli by inserting multiple lac operator sequences...
The ParMRC plasmid partitioning apparatus is one of the best characterized systems for bacterial DNA...
AbstractDespite the power of bacterial genetics, the prokaryotic cell cycle has remained poorly unde...