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Article

Opening a Novel Biosynthetic Pathway to Dihydroxyacetone and Glycerol in Escherichia coli Mutants through Expression of a Gene Variant (fsaAA129S) for Fructose 6-Phosphate Aldolase †

by
Emma Guitart Font
and
Georg A. Sprenger
*
Institute of Microbiology, University of Stuttgart, Allmandring 31, D-70569 Stuttgart, Germany
*
Author to whom correspondence should be addressed.
This work is dedicated to the memory of Arren Bar-Even (1980–2020).
Int. J. Mol. Sci. 2020, 21(24), 9625; https://doi.org/10.3390/ijms21249625
Submission received: 15 November 2020 / Revised: 5 December 2020 / Accepted: 15 December 2020 / Published: 17 December 2020
(This article belongs to the Special Issue Microbial Enzymes and Metabolites)

Abstract

Phosphofructokinase (PFK) plays a pivotal role in glycolysis. By deletion of the genes pfkA, pfkB (encoding the two PFK isoenzymes), and zwf (glucose 6-phosphate dehydrogenase) in Escherichia coli K-12, a mutant strain (GL3) with a complete block in glucose catabolism was created. Introduction of plasmid-borne copies of the fsaA wild type gene (encoding E. coli fructose 6-phosphate aldolase, FSAA) did not allow a bypass by splitting fructose 6-phosphate (F6P) into dihydroxyacetone (DHA) and glyceraldehyde 3-phosphate (G3P). Although FSAA enzyme activity was detected, growth on glucose was not reestablished. A mutant allele encoding for FSAA with an amino acid exchange (Ala129Ser) which showed increased catalytic efficiency for F6P, allowed growth on glucose with a µ of about 0.12 h−1. A GL3 derivative with a chromosomally integrated copy of fsaAA129S (GL4) grew with 0.05 h−1 on glucose. A mutant strain from GL4 where dhaKLM genes were deleted (GL5) excreted DHA. By deletion of the gene glpK (glycerol kinase) and overexpression of gldA (of glycerol dehydrogenase), a strain (GL7) was created which showed glycerol formation (21.8 mM; yield approximately 70% of the theoretically maximal value) as main end product when grown on glucose. A new-to-nature pathway from glucose to glycerol was created.
Keywords: Escherichia coli; phosphofructokinase; pfkAB zwf triple deletion; fructose 6-phosphate aldolase; point mutation; new-to-nature pathway; metabolic bypass; dihydroxyacetone; glycerol dehydrogenase; glycerol formation Escherichia coli; phosphofructokinase; pfkAB zwf triple deletion; fructose 6-phosphate aldolase; point mutation; new-to-nature pathway; metabolic bypass; dihydroxyacetone; glycerol dehydrogenase; glycerol formation

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MDPI and ACS Style

Guitart Font, E.; Sprenger, G.A. Opening a Novel Biosynthetic Pathway to Dihydroxyacetone and Glycerol in Escherichia coli Mutants through Expression of a Gene Variant (fsaAA129S) for Fructose 6-Phosphate Aldolase. Int. J. Mol. Sci. 2020, 21, 9625. https://doi.org/10.3390/ijms21249625

AMA Style

Guitart Font E, Sprenger GA. Opening a Novel Biosynthetic Pathway to Dihydroxyacetone and Glycerol in Escherichia coli Mutants through Expression of a Gene Variant (fsaAA129S) for Fructose 6-Phosphate Aldolase. International Journal of Molecular Sciences. 2020; 21(24):9625. https://doi.org/10.3390/ijms21249625

Chicago/Turabian Style

Guitart Font, Emma, and Georg A. Sprenger. 2020. "Opening a Novel Biosynthetic Pathway to Dihydroxyacetone and Glycerol in Escherichia coli Mutants through Expression of a Gene Variant (fsaAA129S) for Fructose 6-Phosphate Aldolase" International Journal of Molecular Sciences 21, no. 24: 9625. https://doi.org/10.3390/ijms21249625

APA Style

Guitart Font, E., & Sprenger, G. A. (2020). Opening a Novel Biosynthetic Pathway to Dihydroxyacetone and Glycerol in Escherichia coli Mutants through Expression of a Gene Variant (fsaAA129S) for Fructose 6-Phosphate Aldolase. International Journal of Molecular Sciences, 21(24), 9625. https://doi.org/10.3390/ijms21249625

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