Abstract
The biochemistry of teichoic acid and lipid metabolism has been studied during sporulation of B. megaterium KM. Measurements of cell-wall and membrane teichoic acid have shown that net synthesis of these polymers ceases at the onset of sporulation. Pulse-labelling studies show that the period of asymmetric septation and forespore engulfment is marked by an initiation of turnover of membrane teichoic acid but not of wall teichoic acid. This is reflected in the presence of inner-membrane teichoic acid and the virtual absence of wall teichoic acid in dormant spores. The total amount of lipid phosphorus in the sporulating cell increases by 70% as a result of asymmetric septation and subsequent engulfment of the forespore. The phosphorus requirement for this synthesis is derived from a pool formed during exponential growth, which is not exchangeable with extracellular P(i) during sporulation. These results suggest that during sporulation a proportion of the glycerol 3-phosphate produced by preferential degradation of membrane teichoic acid formed during exponential growth is used for phospholipid synthesis during sporulation.
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CITATION STYLE
Johnstone, K., Simion, F. A., & Ellar, D. J. (1982). Teichoic acid and lipid metabolism during sporulation of Bacillus megaterium KM. Biochemical Journal, 202(2), 459–467. https://doi.org/10.1042/bj2020459
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