Background: Cell division in Bacillus subtilis occurs precisely at midcell. Positional control of cell division is exerted by two mechanisms: nucleoid occlusion, through Noc, which prevents division through nucleoids, and the Min system, where the combined action of the MinC, D and J proteins prevents formation of the FtsZ ring at cell poles or recently completed division sites. Methodology/Principal Findings: We used a genetic screen to identify mutations in ftsZ that confer resistance to the lethal overexpression of the MinC/MinD division inhibitor. The FtsZ mutants were purified and found to polymerize to a similar or lesser extent as wild type FtsZ, and all mutants displayed reduced GTP hydrolysis activity indicative of a reduced polyme...
Bacterial resistance to the antibiotics is an increasing worldwide health problem, and the inhibitio...
We conducted a series of experiments examining the effect of polymer stability on FtsZ localization ...
Cell division in almost all bacteria is orchestrated by the essential tubulin homologue FtsZ, which ...
Background: Cell division in Bacillus subtilis occurs precisely at midcell. Positional control of ce...
Cell division in bacteria is regulated by proteins that interact with FtsZ and modulate its ability ...
Cell division in bacteria is regulated by proteins that interact with FtsZ and modulate its ability ...
Bacillus subtilis and Escherichia coli regulate division site selection through two overlapping syst...
Many bacteria grow and divide by binary fission in which a mother cell divides into two identical da...
Background: Cell division in Bacillus subtilis takes place precisely at midcell, through the action ...
We examined the pattern of FtsZ localization in a Bacillus subtilis minCD mutant. When grown in mini...
AbstractThe min system prevents polar cell division in bacteria. Here, the biochemical characterizat...
ABSTRACT A microfluidic system coupled with fluorescence microscopy is a powerful approach for quant...
Previous work has shown that the Bacillus subtilis EzrA protein directly inhibits FtsZ ring assembly...
The min system prevents polar cell division in bacteria. Here, the biochemical characterization of t...
Bacterial resistance towards antibiotics is an increasing worldwide health problem with the potentia...
Bacterial resistance to the antibiotics is an increasing worldwide health problem, and the inhibitio...
We conducted a series of experiments examining the effect of polymer stability on FtsZ localization ...
Cell division in almost all bacteria is orchestrated by the essential tubulin homologue FtsZ, which ...
Background: Cell division in Bacillus subtilis occurs precisely at midcell. Positional control of ce...
Cell division in bacteria is regulated by proteins that interact with FtsZ and modulate its ability ...
Cell division in bacteria is regulated by proteins that interact with FtsZ and modulate its ability ...
Bacillus subtilis and Escherichia coli regulate division site selection through two overlapping syst...
Many bacteria grow and divide by binary fission in which a mother cell divides into two identical da...
Background: Cell division in Bacillus subtilis takes place precisely at midcell, through the action ...
We examined the pattern of FtsZ localization in a Bacillus subtilis minCD mutant. When grown in mini...
AbstractThe min system prevents polar cell division in bacteria. Here, the biochemical characterizat...
ABSTRACT A microfluidic system coupled with fluorescence microscopy is a powerful approach for quant...
Previous work has shown that the Bacillus subtilis EzrA protein directly inhibits FtsZ ring assembly...
The min system prevents polar cell division in bacteria. Here, the biochemical characterization of t...
Bacterial resistance towards antibiotics is an increasing worldwide health problem with the potentia...
Bacterial resistance to the antibiotics is an increasing worldwide health problem, and the inhibitio...
We conducted a series of experiments examining the effect of polymer stability on FtsZ localization ...
Cell division in almost all bacteria is orchestrated by the essential tubulin homologue FtsZ, which ...