Ontology highlight
ABSTRACT: Background
The fast-growing bacterial cell cycle consists of at least two independent cycles of chromosome replication and cell division. To ensure proper cell cycles and viability, chromosome replication and cell division must be coordinated. It has been suggested that metabolism could affect the Escherichia coli cell cycle, but the idea is still lacking solid evidences.Methodology/principle findings
We found that absence of AspC, an aminotransferase that catalyzes synthesis of aspartate, led to generation of small cells with less origins and slow growth. In contrast, excess AspC was found to exert the opposite effect. Further analysis showed that AspC-mediated aspartate metabolism had a specific effect in the cell cycle, as only extra aspartate of the 20 amino acids triggered production of bigger cells with more origins per cell and faster growth. The amount of DnaA protein per cell was found to be changed in response to the availability of AspC. Depletion of (p)ppGpp by ?relA?spoT led to a slight delay in initiation of replication, but did not change the replication pattern found in the ?aspC mutant.Conclusion/significances
The results suggest that AspC-mediated metabolism of aspartate coordinates the E. coli cell cycle through altering the amount of the initiator protein DnaA per cell and the division signal UDP-glucose. Furthermore, AspC sequence conservation suggests similar functions in other organisms.
SUBMITTER: Liu F
PROVIDER: S-EPMC3966765 | biostudies-literature | 2014
REPOSITORIES: biostudies-literature
Liu Feng F Qimuge Hao Jianfeng J Yan Huijuan H Bach Trond T Fan Lifei L Morigen
PloS one 20140326 3
<h4>Background</h4>The fast-growing bacterial cell cycle consists of at least two independent cycles of chromosome replication and cell division. To ensure proper cell cycles and viability, chromosome replication and cell division must be coordinated. It has been suggested that metabolism could affect the Escherichia coli cell cycle, but the idea is still lacking solid evidences.<h4>Methodology/principle findings</h4>We found that absence of AspC, an aminotransferase that catalyzes synthesis of ...[more]