Literature DB >> 3131312

Biochemical and genetic characterization of osmoregulatory trehalose synthesis in Escherichia coli.

H M Giaever1, O B Styrvold, I Kaasen, A R Strøm.   

Abstract

It has been shown previously that Escherichia coli accumulates endogenously synthesized trehalose under osmotic stress. We report here that E. coli contained an osmotically regulated trehalose-phosphate synthase which utilized UDP-glucose and glucose 6-phosphate as substrates. In the wild type, the synthase was induced by growth in glucose-mineral medium of elevated osmotic strength and the synthase itself was strongly stimulated by K+ and other monovalent cations. A laboratory strain which expressed the synthase at a high constitutive level was found. GalU mutants, defective in synthesis of UDP-glucose, did not accumulate trehalose. Two genes governing the synthase were identified and named otsA and otsB (osmoregulatory trehalose synthesis). They mapped near 42 min in the flbB-uvrC region. Mutants with an otsA-lacZ or otsB-lacZ operon fusion displayed osmotically inducible beta-galactosidase activity; i.e., the activity was increased fivefold by growth in medium of elevated osmotic strength. Mutants unable to synthesize trehalose (galU, otsA, and otsB) were osmotically sensitive in glucose-mineral medium. But an osmotically tolerant phenotype was restored in the presence of glycine betaine, which also partially repressed the synthesis of synthase in the wild type and of beta-galactosidase in ots-lacZ fusion mutants.

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Year:  1988        PMID: 3131312      PMCID: PMC211211          DOI: 10.1128/jb.170.6.2841-2849.1988

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


  30 in total

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Review 3.  The metabolism of alpha,alpha-trehalose.

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5.  Construction of an Hfr strain useful for transferring recA mutations between Escherichia coli strains.

Authors:  L N Csonka; A J Clark
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Authors:  B J Bachmann; K B Low
Journal:  Microbiol Rev       Date:  1980-03

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Authors:  P W Postma; H G Keizer; P Koolwijk
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Authors:  D Le Rudulier; T Bernard; G Goas; J Hamelin
Journal:  Can J Microbiol       Date:  1984-03       Impact factor: 2.419

9.  Osmoregulation in Escherichia coli by accumulation of organic osmolytes: betaines, glutamic acid, and trehalose.

Authors:  P I Larsen; L K Sydnes; B Landfald; A R Strøm
Journal:  Arch Microbiol       Date:  1987-02       Impact factor: 2.552

10.  Osmotic adaptation by gram-negative bacteria: possible role for periplasmic oligosaccharides.

Authors:  K J Miller; E P Kennedy; V N Reinhold
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  132 in total

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3.  Characterization of a bifunctional enzyme fusion of trehalose-6-phosphate synthetase and trehalose-6-phosphate phosphatase of Escherichia coli.

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Authors:  L N Csonka
Journal:  Microbiol Rev       Date:  1989-03

7.  Transposon mutations in the 5' end of glnD, the gene for a nitrogen regulatory sensor, that suppress the osmosensitive phenotype caused by otsBA lesions in Escherichia coli.

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8.  In Vivo Titration of Folate Pathway Enzymes.

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9.  Biosynthesis and function of trehalose in Ectothiorhodospira halochloris.

Authors:  K Lippert; E A Galinski; H G Trüper
Journal:  Antonie Van Leeuwenhoek       Date:  1993-01       Impact factor: 2.271

10.  Deoxyfluoro-d-trehalose (FDTre) analogues as potential PET probes for imaging mycobacterial infection.

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