Literature DB >> 4869212

Selection of Escherichia coli mutants lacking glucose-6-phosphate dehydrogenase or gluconate-6-phosphate dehydrogenase.

D G Fraenkel.   

Abstract

Glucose is metabolized in Escherichia coli chiefly via the phosphoglucose isomerase reaction; mutants lacking that enzyme grow slowly on glucose by using the hexose monophosphate shunt. When such a strain is further mutated so as to yield strains unable to grow at all on glucose or on glucose-6-phosphate, the secondary strains are found to lack also activity of glucose-6-phosphate dehydrogenase. The double mutants can be transduced back to glucose positivity; one class of transductants has normal phosphoglucose isomerase activity but no glucose-6-phosphate dehydrogenase. An analogous scheme has been used to select mutants lacking gluconate-6-phosphate dehydrogenase. Here the primary mutant lacks gluconate-6-phosphate dehydrase (an enzyme of the Enter-Doudoroff pathway) and grows slowly on gluconate; gluconate-negative mutants are selected from it. These mutants, lacking the nicotinamide dinucleotide phosphate-linked glucose-6-phosphate dehydrogenase or gluconate-6-phosphate dehydrogenase, grow on glucose at rates similar to the wild type. Thus, these enzymes are not essential for glucose metabolism in E. coli.

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Year:  1968        PMID: 4869212      PMCID: PMC315081          DOI: 10.1128/jb.95.4.1267-1271.1968

Source DB:  PubMed          Journal:  J Bacteriol        ISSN: 0021-9193            Impact factor:   3.490


  13 in total

1.  The labeling of pentose phosphate from glucose-14C and estimation of the rates of transaldolase, transketolase, the contribution of the pentose cycle, and ribose phosphate synthesis.

Authors:  J Katz; R Rognstad
Journal:  Biochemistry       Date:  1967-07       Impact factor: 3.162

2.  The primary biochemical effect of a morphological mutation in Neurospora crassa.

Authors:  S Brody; E L Tatum
Journal:  Proc Natl Acad Sci U S A       Date:  1966-10       Impact factor: 11.205

3.  Genetic mapping of mutations affecting phosphoglucose isomerase and fructose diphosphatase in Escherichia coli.

Authors:  D G Fraenkel
Journal:  J Bacteriol       Date:  1967-05       Impact factor: 3.490

4.  The enzymatic lesion of strain MM-6, a pleiotropic carbohydrate-negative mutant of Escherichia coli.

Authors:  S Tanaka; D G Fraenkel; E C Lin
Journal:  Biochem Biophys Res Commun       Date:  1967-04-07       Impact factor: 3.575

Review 5.  Biosynthesis of ribose and deoxyribose.

Authors:  H Z Sable
Journal:  Adv Enzymol Relat Areas Mol Biol       Date:  1966

6.  A proposal for a uniform nomenclature in bacterial genetics.

Authors:  M Demerec; E A Adelberg; A J Clark; P E Hartman
Journal:  Genetics       Date:  1966-07       Impact factor: 4.562

7.  Characterization of enterobacteria by starch-gel electrophoresis of glucose-6-phosphate dehydrogenase and phosphogluconate dehydrogenase.

Authors:  J E Bowman; R R Brubaker; H Frischer; P E Carson
Journal:  J Bacteriol       Date:  1967-09       Impact factor: 3.490

8.  Gluconate metabolism in Escherichia coli.

Authors:  R C Eisenberg; W J Dobrogosz
Journal:  J Bacteriol       Date:  1967-03       Impact factor: 3.490

9.  Glucose and gluconate metabolism in an Escherichia coli mutant lacking phosphoglucose isomerase.

Authors:  D G Fraenkel; S R Levisohn
Journal:  J Bacteriol       Date:  1967-05       Impact factor: 3.490

10.  Glucose and gluconate metabolism in a mutant of Escherichia coli lacking gluconate-6-phosphate dehydrase.

Authors:  R Zablotny; D G Fraenkel
Journal:  J Bacteriol       Date:  1967-05       Impact factor: 3.490

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  47 in total

1.  New phosphoglucose isomerase mutants of Escherichia coli.

Authors:  R T Vinopal; J D Hillman; H Schulman; W S Reznikoff; D G Fraenkel
Journal:  J Bacteriol       Date:  1975-06       Impact factor: 3.490

2.  Elevated glucose 6-phosphate levels are associated with plasmid mutations in vivo.

Authors:  A T Lee; A Cerami
Journal:  Proc Natl Acad Sci U S A       Date:  1987-12       Impact factor: 11.205

3.  Molecular characterization of the Escherichia coli K-12 zwf gene encoding glucose 6-phosphate dehydrogenase.

Authors:  D L Rowley; R E Wolf
Journal:  J Bacteriol       Date:  1991-02       Impact factor: 3.490

4.  In vitro synthesis of a constitutive enzyme of Escherichia coli, 6-phosphogluconate dehydrogenase.

Authors:  T Isturiz; R E Wolf
Journal:  Proc Natl Acad Sci U S A       Date:  1975-11       Impact factor: 11.205

5.  Pentose phosphate pathway mutants of yeast.

Authors:  Z Lobo; P K Maitra
Journal:  Mol Gen Genet       Date:  1982

6.  Identification of lipopolysaccharides and phospholipids of Escherichia coli in polyacrylamide gels.

Authors:  S C Bailey; D Apirion
Journal:  J Bacteriol       Date:  1977-07       Impact factor: 3.490

7.  Genetic mapping of loci for glucose-6-phosphate dehydrogenase, gluconate-6-phosphate dehydrogenase, and gluconate-6-phosphate dehydrase in Escherichia coli.

Authors:  G Peyru; D G Fraenkel
Journal:  J Bacteriol       Date:  1968-04       Impact factor: 3.490

8.  Genetic map position of the gluconate-6-phosphate dehydrogenase gene in Salmonella typhimurium.

Authors:  M L Murray; T Klopotowski
Journal:  J Bacteriol       Date:  1968-04       Impact factor: 3.490

9.  2-keto-3-deoxygluconate 6-phosphate aldolase mutants of Escherichia coli.

Authors:  J E Fradkin; D G Fraenkel
Journal:  J Bacteriol       Date:  1971-12       Impact factor: 3.490

10.  Isolation and characterization of the glucose-6-phosphate dehydrogenase encoding gene (gsdA) from Aspergillus niger.

Authors:  P van den Broek; T Goosen; B Wennekes; H van den Broek
Journal:  Mol Gen Genet       Date:  1995-04-20
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