has been cited by the following articles in journals that are participating in CrossRef's forward linking service: |
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| Global physiological analysis of carbon- and energy-limited growing Escherichia coli confirms a high degree of catabolic flexibility
and preparedness for mixed substrate utilization Julian Ihssen and Thomas Egli Environmental Microbiology (2005) 7: 1568 Link to Article |
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| Maltose adaptive mutant of heterotrophic marine bacterium, Alteromonas espejiana Bal-31: Changes in the growth and the induction
of extracellular .ALPHA.-amylase Tyy-Huoy Lee, Shing-Lon Ho, Hsueh-Mei Chou, and Wu-Fu Tong The Journal of General and Applied Microbiology (2005) 51: 165 Link to Article |
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| The CRP-cAMP complex and downregulation of the glnAp2 promoter provides a novel regulatory linkage between carbon metabolism
and nitrogen assimilation in Escherichia coli Zhe-Xian Tian, Quan-Sheng Li, Martin Buck, Annie Kolb, and Yi-Ping Wang Molecular Microbiology (2001) 41: 911 Link to Article |
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| Mechanism of catabolite repression in the bgl operon of Escherichia coli: involvement of the anti-terminator BglG, CRP-cAMP
and EIIAGlc in mediating glucose effect downstream of transcription initiation Abhilasha Gulati and Subramony Mahadevan Genes to Cells (2000) 5: 239 Link to Article |
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| Glycerol-3-phosphate-mediated repression of malT in Escherichia coli does not require metabolism, depends on enzyme IIAGlc
and is mediated by cAMP levels Tanja Eppler and Winfried Boos Molecular Microbiology (1999) 33: 1221 Link to Article |
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| Expression of the phosphotransferase system both mediates and is mediated by Mlc regulation in Escherichia coli Jacqueline Plumbridge Molecular Microbiology (1999) 33: 260 Link to Article |
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| Inducer exclusion in Escherichia coli by non-PTS substrates: the role of the PEP to pyruvate ratio in determining the phosphorylation
state of enzyme IIAGlc Boris M. Hogema, Jos C. Arents, Rechien Bader, Kevin Eijkemans, Hiromi Yoshida, Hideyuki Takahashi, Hiroji Aiba, and Pieter W. Postma Molecular Microbiology (1998) 30: 487 Link to Article |
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| Inducer exclusion by glucose 6-phosphate in Escherichia coli Boris M. Hogema, Jos C. Arents, Rechien Bader, Kevin Eijkemans, Toshifumi Inada, Hiroji Aiba, and Pieter W. Postma Molecular Microbiology (1998) 28: 755 Link to Article |
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| Expression of ptsG, the gene for the major glucose PTS transporter in Escherichia coli, is repressed by Mlc and induced by
growth on glucose Jacqueline Plumbridge Molecular Microbiology (1998) 29: 1053 Link to Article |
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| Overview of controls in theEscherichia coli cell cycle Daniel Vinella and Richard D'Ari BioEssays (1995) 17: 527 Link to Article |
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| The catalytic domain of Escherichia coli K-12 adenylate cyclase as revealed by deletion analysis of the cya gene Martine Crasnier, Valérie Dumay, and Antoine Danchin Molecular Genetics and Genomics (1994) 243: 409 Link to Article |
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| Nutritional factors controlling exocellular proteinase production in a soil-isolatedXanthomonas maltophilia strain Elisabeth Singer and Jaqueline Debette Journal of Basic Microbiology (1993) 33: 113 Link to Article |
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| A lowered concentration of cAMP receptor protein caused by glucose is an important determinant for catabolite repression in
Escherichia coli Hitoshi Ishizuka, Akemi Hanamura, Tadashi Kunimura, and Hiroji Aiba Molecular Microbiology (1993) 10: 341 Link to Article |
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| Production of colonization factor antigen II of enterotoxigenicEscherichia coli is subject to catabolite repression Dolores G. Evans, Doyle J. Evans, Tuomo K. Karjalainen, and Chao-Hung Lee Current Microbiology (1991) 23: 71 Link to Article |
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| Catabolite repression of the colonization factor antigen I (CFA/I) operon ofEscherichia coli Tuomo K. Karjalainen, Dolores G. Evans, Doyle J. Evans, David Y. Graham, and Chao-Hung Lee Current Microbiology (1991) 23: 307 Link to Article |
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| Aldehyde dehydrogenase induction by glutamate in Escherichia coli. Role of 2-oxoglutarate Francesc Xavier QUINTILLA, Laura BALDOMA, Josefa BADIA, and Juan AGUILAR European Journal of Biochemistry (1991) 202: 1321 Link to Article |
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| Elucidation of enzyme control mechanisms using macroscopic measurements in a mixed substrate fermentation system Norman Pih, Eliana De Bernardez, and Prasad Dhurjati Biotechnology and Bioengineering (1988) 31: 311 Link to Article |
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| Regulation oflac operon expression in mixed sugar chemostat cultures N. G. Ray, W. R. Vieth, and K. Venkatasubramanian Biotechnology and Bioengineering (1987) 29: 1003 Link to Article |
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| Isolation and characterization of the Fnr protein, the transcriptional regulator of anaerobic electron transport in Escherichia
coli Gottfried UNDEN and John R. GUEST European Journal of Biochemistry (1985) 146: 193 Link to Article |
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| A nuclear-Overhauser-enhancement study of the solution structure of a double-stranded DNA undecamer comprising a portion of
the specific target site for the cyclic-AMP-receptor protein in the gal operon. Sequential resonance assignment G. Marius CLORE and Angela M. GRONENBORN European Journal of Biochemistry (1984) 141: 119 Link to Article |
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| The role of cyclic AMP excretion in the regulation of enzyme synthesis in Escherichia coli Isabelle Crenon and Agnes Ullmann FEMS Microbiology Letters (1984) 22: 47 Link to Article |
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| The intracellular concentration of cyclic adenosine 3',5'-monophosphate is constant throughout the cell cycle of Escherichia
coli Joachim-Volker Holtje and Nanne Nanninga FEMS Microbiology Letters (1984) 22: 189 Link to Article |
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| Adenosine 3′, 5′-cyclic monophosphate levels inThermonomonspora curvata during cellulase biosynthesis George Fennington, Debbie Neubauer, and Fred Stutzenberger Biotechnology and Bioengineering (1983) 25: 2271 Link to Article |
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| Catabolite repression during single and multiple induction inEscherichia coli
M. Jirešové, J. Janeček, and J. Náprstek Folia Microbiologica (1981) 26: 1 Link to Article |
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| Structure of catabolite gene activator protein at 2.9 Å resolution suggests binding to left-handed B-DNA David B. McKay and Thomas A. Steitz Nature (1981) 290: 744 Link to Article |
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| MODELING OF INDUCIBLE ENZYME BIOSYNTHESIS IN MICROBIAL CELLS Krishna R. Kaushik, Shinichiro Condo, and K. Venkatasubramanian Annals of the New York Academy of Sciences (1979) 326: 57 Link to Article |
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| Modeling the role of cyclic AMP in catabolite repression of inducible enzyme biosynthesis in mircobial cells Shinichiro Gondo, K. Venkatasubramanian, Wolf R. Vieth, and A. Constantinides Biotechnology and Bioengineering (1978) 20: 1797 Link to Article |
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| The mechanism of sugar-dependent repression of synthesis of catabolic enzymes in escherichia coli Jose E. Gonzalez and Alan Peterkofsky Journal of Supramolecular Structure (1977) 6: 495 Link to Article |
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