Disruption of Glycogen Metabolism Alters Cell Size in Escherichia Coli
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Abstract Background: The availability of nutrients impacts cell size and growth rate in many organisms. Research in E. coli has traditionally focused on the influence of exogenous nutrient sources on cell size through their effect on growth and cell cycle progression. Utilising a set of mutants where three genes involved in glycogen degradation - glycogen phosphorylase (glgP), glycogen debranching enzyme (glgX) and maltodextrin phosphorylase (malP) - were disrupted, we examined if degradation of this energy storage compound affects cell size. Results: It was found that mutations to malP increased cell lengths and resulted in substantial heterogeneity of cell size. This was most apparent during exponential growth and the phenotype was unaccompanied by alterations in Z-ring occurrence, cellular FtsZ levels and generation times. ∆malP mutant cells did, however, show abnormal nuclear staining patterns and accumulate increased DnaA amounts at late growth stages, indicating a potential effect on DNA replication. Conclusion: This study reveals a link between glycogen metabolism and cell size in E. coli. A disrupted malP allele is associated with cell size heterogeneity and elongation at all stages of growth, without detectable changes to mass doubling time, FtsZ protein levels or division ring frequency.
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