Novel transcriptional control of the pyruvate formate-lyase gene: upstream regulatory sequences and multiple promoters regulate anaerobic expression
暂无分享,去创建一个
A. Böck | G. Sawers | A Böck | G Sawers | August Böck
[1] T. Mizuno,et al. Characterization by deletion and localized mutagenesis in vitro of the promoter region of the Escherichia coli ompC gene and importance of the upstream DNA domain in positive regulation by the OmpR protein , 1986, Journal of bacteriology.
[2] I. Saint Girons,et al. Evidence for an internal promoter in the Escherichia coli threonine operon , 1985, Journal of bacteriology.
[3] Sarah F. Newbury,et al. Differential mRNA stability controls relative gene expression within a polycistronic operon , 1987, Cell.
[4] H. Hummel,et al. Transcription signals for stable RNA genes in Methanococcus. , 1986, Nucleic acids research.
[5] Lukas C. Kühn,et al. A stem-loop in the 3′ untranslated region mediates iron-dependent regulation of transferrin receptor mRNA stability in the cytoplasm , 1988, Cell.
[6] A. Böck,et al. Anaerobic regulation of pyruvate formate-lyase from Escherichia coli K-12 , 1988, Journal of bacteriology.
[7] P. Jayaraman,et al. Location and sequence of the promoter of the gene for the NADH-dependent nitrite reductase of Escherichia coli and its regulation by oxygen, the Fnr protein and nitrite. , 1987, Journal of molecular biology.
[8] D. Clark. The number of anaerobically regulated genes in Escherichia coli , 1984 .
[9] Ian R. Booth,et al. A physiological role for DNA supercoiling in the osmotic regulation of gene expression in S. typhimurium and E. coli , 1988, Cell.
[10] D. Botstein,et al. Properties of the translocatable tetracycline-resistance element Tn10 in Escherichia coli and bacteriophage lambda. , 1978, Genetics.
[11] S. Cole. Nucleotide sequence coding for the flavoprotein subunit of the fumarate reductase of Escherichia coli. , 2005, European journal of biochemistry.
[12] T. Platt,et al. Initiation in vivo at the internal trp p2 promoter of Escherichia coli. , 1983, The Journal of biological chemistry.
[13] T. C. King,et al. Nucleolytic processing of ribonucleic acid transcripts in procaryotes , 1986 .
[14] J. Shine,et al. The 3'-terminal sequence of Escherichia coli 16S ribosomal RNA: complementarity to nonsense triplets and ribosome binding sites. , 1974, Proceedings of the National Academy of Sciences of the United States of America.
[15] M. Simon,et al. Sensory transducers of E. coli are composed of discrete structural and functional domains , 1983, Cell.
[16] H. Aiba,et al. Evidence for two functional gal promoters in intact Escherichia coli cells. , 1981, The Journal of biological chemistry.
[17] E. Chen,et al. Supercoil sequencing: a fast and simple method for sequencing plasmid DNA. , 1985, DNA.
[18] B. Haddock,et al. The identification of mutants of Escherichia coli deficient in formate dehydrogenase and nitrate reductase activities using dye indicator plates , 1977 .
[19] T. Ikemura,et al. Small ribonucleic acids of Escherichia coli. I. Characterization by polyacrylamide gel electrophoresis and fingerprint analysis. , 1973, The Journal of biological chemistry.
[20] D Court,et al. Regulatory sequences involved in the promotion and termination of RNA transcription. , 1979, Annual review of genetics.
[21] T Platt,et al. Transcription termination and the regulation of gene expression. , 1986, Annual review of biochemistry.
[22] J. Sambrook,et al. Molecular Cloning: A Laboratory Manual , 2001 .
[23] The nirB promoter of Escherichia coli: location of nucleotide sequences essential for regulation by oxygen, the FNR protein and nitrite , 1988, Molecular microbiology.
[24] D. Schlessinger,et al. Nucleolytic processing of ribonucleic acid transcripts in procaryotes. , 1986, Microbiological reviews.
[25] D. Kennell,et al. Evidence for endonucleolytic cleavages in decay of lacZ and lacI mRNAs , 1988, Journal of bacteriology.
[26] J. Demoss,et al. Promoter region of the nar operon of Escherichia coli: nucleotide sequence and transcription initiation signals , 1987, Journal of bacteriology.
[27] Examination of the internal promoter, PE, in the ilvGMEDA operon of E. coli K-12. , 1986, Nucleic acids research.
[28] N. Yamamoto,et al. Mechanisms determining aerobic or anaerobic growth in the facultative anaerobe Salmonella typhimurium. , 1985, Proceedings of the National Academy of Sciences of the United States of America.
[29] Ö. Melefors,et al. Site-specific endonucleolytic cleavages and the regulation of stability of E. coli ompA mRNA , 1988, Cell.
[30] F. Ausubel. Regulation of nitrogen fixation genes , 1984, Cell.
[31] H. Kornberg,et al. Genetic control of the uptake of pyruvate by Escherichia coli. , 1967, Biochimica et biophysica acta.
[32] W. Gilbert,et al. Sequencing end-labeled DNA with base-specific chemical cleavages. , 1980, Methods in enzymology.
[33] V. Stewart. Nitrate respiration in relation to facultative metabolism in enterobacteria , 1988, Microbiological reviews.
[34] Stanley N Cohen,et al. An intercistronic stem-loop structure functions as an mRNA decay terminator necessary but insufficient for puf mRNA stability , 1988, Cell.
[35] J. Guest,et al. Mutants of Escherichia coli K12 unable to use fumarate as an anaerobic electron acceptor. , 1976, Journal of general microbiology.
[36] R. Gunsalus,et al. Transcription of the Escherichia coli fumarate reductase genes (frdABCD) and their coordinate regulation by oxygen, nitrate, and fumarate , 1985, Journal of bacteriology.
[37] R S Wolfe,et al. New approach to the cultivation of methanogenic bacteria: 2-mercaptoethanesulfonic acid (HS-CoM)-dependent growth of Methanobacterium ruminantium in a pressureized atmosphere , 1976, Applied and environmental microbiology.
[38] C. Bruni,et al. Structure and function of the internal promoter (hisBp) of the Escherichia coli K-12 histidine operon , 1983, Journal of bacteriology.
[39] S. Cohen,et al. Lactose genes fused to exogenous promoters in one step using a Mu-lac bacteriophage: in vivo probe for transcriptional control sequences. , 1979, Proceedings of the National Academy of Sciences of the United States of America.
[40] S. Busby,et al. RNA polymerase molecules initiating transcription at tandem promoters can collide and cause premature transcription termination , 1987, FEBS letters.
[41] Jeffrey H. Miller. Experiments in molecular genetics , 1972 .
[42] J. Knappe,et al. Primary structures of Escherichia coli pyruvate formate-lyase and pyruvate-formate-lyase-activating enzyme deduced from the DNA nucleotide sequences. , 1988, European journal of biochemistry.
[43] E. Padan,et al. Biosynthesis of the lactose permease in Escherichia coli minicells and effect of carrier amplification on cell physiology. , 1983, The Journal of biological chemistry.
[44] P. Sharp,et al. Sizing and mapping of early adenovirus mRNAs by gel electrophoresis of S1 endonuclease-digested hybrids , 1977, Cell.
[45] A. Böck,et al. Nucleotide sequence and expression of the selenocysteine-containing polypeptide of formate dehydrogenase (formate-hydrogen-lyase-linked) from Escherichia coli. , 1986, Proceedings of the National Academy of Sciences of the United States of America.
[46] J. Guest,et al. Differential roles of the Escherichia coli fumarases and fnr-dependent expression of fumarase B and aspartase , 1987 .
[47] D. Crothers,et al. Improved estimation of secondary structure in ribonucleic acids. , 1973, Nature: New biology.
[48] L. M. Albright,et al. Rhizobium meliloti ntrA (rpoN) gene is required for diverse metabolic functions , 1987, Journal of bacteriology.
[49] M. Schwartz,et al. Positive control of transcription initiation in bacteria. , 1984, Annual review of genetics.
[50] Mark Ptashne,et al. Gene regulation by proteins acting nearby and at a distance , 1986, Nature.
[51] C. Higgins,et al. DNA supercoiling and the anaerobic and growth phase regulation of tonB gene expression , 1988, Journal of bacteriology.
[52] A. Gabain,et al. In vivo and in vitro identity of site specific cleavages in the 5′ non‐coding region of ompA and bla mRNA in Escherichia coli. , 1988, The EMBO journal.
[53] Frederick M. Ausubel,et al. Conserved domains in bacterial regulatory proteins that respond to environmental stimuli , 1987, Cell.
[54] S. Normark,et al. Processed mRNA with differential stability in the regulation of E. coli pilin gene expression , 1988, Cell.