Molecular analysis of the Corynebacterium glutamicum lysl gene involved in lysine uptake

Seep-Feldhaus AH, Kalinowski J, Pühler A (1991)
MOLECULAR MICROBIOLOGY 5(12): 2995-3005.

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Abstract / Bemerkung
Two Corynebacterium glutamicum mutants defective in lysine uptake were identified by analysing mutants resistant to S-(2-aminoethyl)-cysteine (AEC). A 5.6 kb genomic DNA fragment restoring AEC sensitivity and lysine uptake was isolated. A 4.2 kb subfragment was sequenced and three open reading frames were identified. Subcloning and gene disruption experiments showed that only the first open reading frame, termed lysI, is involved in lysine uptake. LysI consists of 501 amino acids with a M(r) of 53600. The hydrophobicity profile suggests that the lysI gene product is an integral membrane protein with 13 transmembrane segments. The amino acid sequence of lysI displays strong homology to that of the arcD gene product of Pseudomonas aeruginosa, which is proposed to act as an arginine-ornithine antiporter. Investigation of the influence of the lysI gene on lysine secretion suggests the existence of a separate lysine efflux system in C. glutamicum.
Erscheinungsjahr
1991
Zeitschriftentitel
MOLECULAR MICROBIOLOGY
Band
5
Ausgabe
12
Seite(n)
2995-3005
ISSN
0950-382X
eISSN
1365-2958
Page URI
https://pub.uni-bielefeld.de/record/1648831

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Seep-Feldhaus AH, Kalinowski J, Pühler A. Molecular analysis of the Corynebacterium glutamicum lysl gene involved in lysine uptake. MOLECULAR MICROBIOLOGY. 1991;5(12):2995-3005.
Seep-Feldhaus, A. H., Kalinowski, J., & Pühler, A. (1991). Molecular analysis of the Corynebacterium glutamicum lysl gene involved in lysine uptake. MOLECULAR MICROBIOLOGY, 5(12), 2995-3005. https://doi.org/10.1111/j.1365-2958.1991.tb01859.x
Seep-Feldhaus, A. H., Kalinowski, Jörn, and Pühler, Alfred. 1991. “Molecular analysis of the Corynebacterium glutamicum lysl gene involved in lysine uptake”. MOLECULAR MICROBIOLOGY 5 (12): 2995-3005.
Seep-Feldhaus, A. H., Kalinowski, J., and Pühler, A. (1991). Molecular analysis of the Corynebacterium glutamicum lysl gene involved in lysine uptake. MOLECULAR MICROBIOLOGY 5, 2995-3005.
Seep-Feldhaus, A.H., Kalinowski, J., & Pühler, A., 1991. Molecular analysis of the Corynebacterium glutamicum lysl gene involved in lysine uptake. MOLECULAR MICROBIOLOGY, 5(12), p 2995-3005.
A.H. Seep-Feldhaus, J. Kalinowski, and A. Pühler, “Molecular analysis of the Corynebacterium glutamicum lysl gene involved in lysine uptake”, MOLECULAR MICROBIOLOGY, vol. 5, 1991, pp. 2995-3005.
Seep-Feldhaus, A.H., Kalinowski, J., Pühler, A.: Molecular analysis of the Corynebacterium glutamicum lysl gene involved in lysine uptake. MOLECULAR MICROBIOLOGY. 5, 2995-3005 (1991).
Seep-Feldhaus, A. H., Kalinowski, Jörn, and Pühler, Alfred. “Molecular analysis of the Corynebacterium glutamicum lysl gene involved in lysine uptake”. MOLECULAR MICROBIOLOGY 5.12 (1991): 2995-3005.

24 Zitationen in Europe PMC

Daten bereitgestellt von Europe PubMed Central.

Physiological Response of Corynebacterium glutamicum to Increasingly Nutrient-Rich Growth Conditions.
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PMID: 30210489
Anaerobic growth of Corynebacterium glutamicum via mixed-acid fermentation.
Michel A, Koch-Koerfges A, Krumbach K, Brocker M, Bott M., Appl Environ Microbiol 81(21), 2015
PMID: 26276118
Deletion of arcD in Streptococcus pneumoniae D39 impairs its capsule and attenuates virulence.
Gupta R, Yang J, Dong Y, Swiatlo E, Zhang JR, Metzger DW, Bai G., Infect Immun 81(10), 2013
PMID: 23918778
Characterization and molecular mechanism of AroP as an aromatic amino acid and histidine transporter in Corynebacterium glutamicum.
Shang X, Zhang Y, Zhang G, Chai X, Deng A, Liang Y, Wen T., J Bacteriol 195(23), 2013
PMID: 24056108
Identification of the membrane protein SucE and its role in succinate transport in Corynebacterium glutamicum.
Huhn S, Jolkver E, Krämer R, Marin K., Appl Microbiol Biotechnol 89(2), 2011
PMID: 20809072
Biotechnological production of polyamines by bacteria: recent achievements and future perspectives.
Schneider J, Wendisch VF., Appl Microbiol Biotechnol 91(1), 2011
PMID: 21552989
Mapping the membrane proteome of Corynebacterium glutamicum.
Schluesener D, Fischer F, Kruip J, Rögner M, Poetsch A., Proteomics 5(5), 2005
PMID: 15717325
The complete Corynebacterium glutamicum ATCC 13032 genome sequence and its impact on the production of L-aspartate-derived amino acids and vitamins.
Kalinowski J, Bathe B, Bartels D, Bischoff N, Bott M, Burkovski A, Dusch N, Eggeling L, Eikmanns BJ, Gaigalat L, Goesmann A, Hartmann M, Huthmacher K, Krämer R, Linke B, McHardy AC, Meyer F, Möckel B, Pfefferle W, Pühler A, Rey DA, Rückert C, Rupp O, Sahm H, Wendisch VF, Wiegräbe I, Tauch A., J Biotechnol 104(1-3), 2003
PMID: 12948626
Efflux of compatible solutes in Corynebacterium glutamicum mediated by osmoregulated channel activity.
Ruffert S, Lambert C, Peter H, Wendisch VF, Krämer R., Eur J Biochem 247(2), 1997
PMID: 9266699
Transport mutants and transport genes of Corynebacterium glutamicum.
Eggeling L, Krämer R, Vrljic M, Kronemeyer W, Sahm H., Ann N Y Acad Sci 782(), 1996
PMID: 8659896
A physical and genetic map of the Corynebacterium glutamicum ATCC 13032 chromosome.
Bathe B, Kalinowski J, Pühler A., Mol Gen Genet 252(3), 1996
PMID: 8842145
Recent advances in the physiology and genetics of amino acid-producing bacteria.
Jetten MS, Sinskey AJ., Crit Rev Biotechnol 15(1), 1995
PMID: 7736600
Structure of the gluABCD cluster encoding the glutamate uptake system of Corynebacterium glutamicum.
Kronemeyer W, Peekhaus N, Krämer R, Sahm H, Eggeling L., J Bacteriol 177(5), 1995
PMID: 7868586
Molecular aspects of lysine, threonine, and isoleucine biosynthesis in Corynebacterium glutamicum.
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PMID: 8092856

50 References

Daten bereitgestellt von Europe PubMed Central.


Abe, J Gen Appl Microbiol 13(), 1967
Control of transcription termination.
Adhya S, Gottesman M., Annu. Rev. Biochem. 47(), 1978
PMID: 354508
DNA amplification and an unstable arginine gene in Streptomyces lividans 66.
Altenbuchner J, Cullum J., Mol. Gen. Genet. 195(1-2), 1984
PMID: 6092842
Nucleotide sequence and exact localization of the neomycin phosphotransferase gene from transposon Tn5.
Beck E, Ludwig G, Auerswald EA, Reiss B, Schaller H., Gene 19(3), 1982
PMID: 6295884

Bimboim, Anal Biochem 114(), 1979

Broer, J Bacteriol 172(), 1990
Regulation of enzymes of lysine biosynthesis in Corynebacterium glutamicum.
Cremer J, Treptow C, Eggeling L, Sahm H., J. Gen. Microbiol. 134(12), 1988
PMID: 3151991

AUTHOR UNKNOWN, 0
Establishing homologies in protein sequences.
Dayhoff MO, Barker WC, Hunt LT., Meth. Enzymol. 91(), 1983
PMID: 6855599
Arginine transport in Streptococcus lactis is catalyzed by a cationic exchanger.
Driessen AJ, Poolman B, Kiewiet R, Konings W., Proc. Natl. Acad. Sci. U.S.A. 84(17), 1987
PMID: 2819865

Driessen, J Bacteriol 170(), 1989

AUTHOR UNKNOWN, 0
Improvements of DNA sequencing gels.
Garoff H, Ansorge W., Anal. Biochem. 115(2), 1981
PMID: 7304971

Hawley, Nucl Acids Res 11(), 1983

AUTHOR UNKNOWN, 0

Hoischen, J Bacteriol 172(), 1990
A rapid boiling method for the preparation of bacterial plasmids.
Holmes DS, Quigley M., Anal. Biochem. 114(1), 1981
PMID: 6269464

Ishino, Agric Biol Chem 52(), 1988
Genetic and biochemical analysis of the aspartokinase from Corynebacterium glutamicum.
Kalinowski J, Cremer J, Bachmann B, Eggeling L, Sahm H, Puhler A., Mol. Microbiol. 5(5), 1991
PMID: 1956296

Katsumata, J Bacteriol 159(), 1984
R plasmids in Corynebacterium xerosis strains.
Kono M, Sasatsu M, Aoki T., Antimicrob. Agents Chemother. 23(3), 1983
PMID: 6847177
A simple method for displaying the hydropathic character of a protein.
Kyte J, Doolittle RF., J. Mol. Biol. 157(1), 1982
PMID: 7108955

Lipman, Science 221(), 1985

Luntz, J. Gen Microbiol 132(), 1986
The arc operon for anaerobic arginine catabolism in Pseudomonas aeruginosa contains an additional gene, arcD, encoding a membrane protein.
Luthi E, Baur H, Gamper M, Brunner F, Villeval D, Mercenier A, Haas D., Gene 87(1), 1990
PMID: 2158926

Maniatis, 1982

AUTHOR UNKNOWN, 0

Messing, Recombinant DNA Technical Bulletin 2(), 1979

Miller, 1972

Miwa, Agric Biol Chem 48(), 1984

Nakayama, 1985
DNA sequencing with chain-terminating inhibitors.
Sanger F, Nicklen S, Coulson AR., Proc. Natl. Acad. Sci. U.S.A. 74(12), 1977
PMID: 271968

Sano, J Gen Appl Microbiol 16(), 1970

Schafer, J Bacteriol 172(), 1990

Schrumpf, J Bacteriol 14(), 1991

Schwarzer, Biol Technology 9(), 1991

AUTHOR UNKNOWN, 0

Staden, Nucl Acids Res 14(), 1986

AUTHOR UNKNOWN, 0
Cloning of a DNA fragment from Corynebacterium glutamicum conferring aminoethyl cysteine resistance and feedback resistance to aspartokinase.
Thierbach G, Kalinowski J, Bachmann B, Puhler A., Appl. Microbiol. Biotechnol. 32(4), 1990
PMID: 1366393

AUTHOR UNKNOWN, 0

Wauven, J Bacteriol 160(), 1984

Heijne, 1987
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