Sorbitol promotes growth of Zymomonas mobilis in environments with high concentrations of sugar: Evidence for a physiological function of glucose- fructose oxidoreductase in osmoprotection

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Abstract

The gram-negative ethanologenetic bacterium Zymomonas mobilis is able to grow in media containing high concentrations of glucose or other sugars. A novel compatible solute for bacteria, sorbitol, which enhances growth of Z. mobilis at glucose concentrations exceeding 0.83 M (15%), is described. Added sorbitol was accumulated intracellularly up to 1 M to counteract high external glucose concentrations (up to 1.66 M or 30%). Accumulation of sorbitol was triggered by a glucose upshift (e.g., from 0.33 to 1.27 M or 6 to 23%) and was prevented by the uncoupler CCCP (carbonyl cyanide m- chlorophenylhydrazone; 100 μM). The sorbitol transport system followed Michaelis-Menten kinetics, with an apparent K(m) of 34 mM and a V(max) of 11.2 nmol · min-1 · mg-1 (dry mass). Sorbitol was produced by the cells themselves and was accumulated when growing on sucrose (1 M or 36%) by the action of the periplasmic enzyme glucose-fructose oxidoreductase, which converts glucose and fructose to gluconolactone and sorbitol. Thus, Z. mobilis can form and accumulate the compatible solute sorbitol from a natural carbon source, sucrose, in order to overcome osmotic stress in high-sugar media. No other major compatible solute (betaine, proline, glutamate, or trehalose) was detected.

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Loos, H., Kramer, R., Sahm, H., & Sprenger, G. A. (1994). Sorbitol promotes growth of Zymomonas mobilis in environments with high concentrations of sugar: Evidence for a physiological function of glucose- fructose oxidoreductase in osmoprotection. Journal of Bacteriology, 176(24), 7688–7693. https://doi.org/10.1128/jb.176.24.7688-7693.1994

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