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Escherichia coli RNA polymerase: purification, subunit structure, and factor requirements.
Fed Proc. 1970 May-Jun;29(3):1164-9
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An ancient developmental induction: heat-shock proteins induced in sporulation and oogenesis.
Science. 1986 Mar 7;231(4742):1154-7
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Role of transcription in the temporal control of development in Caulobacter crescentus (stalk-rifampin-RNA synthesis-DNA synthesis-motility).
Proc Natl Acad Sci U S A. 1972 Feb;69(2):447-51
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Synthesis and structure of Caulobacter crescentus flagella.
J Bacteriol. 1973 Jan;113(1):478-85
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Deoxyribonucleic acid-dependent ribonucleic acid polymerase of Caulobacter crescentus.
J Bacteriol. 1973 Sep;115(3):848-57
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High resolution two-dimensional electrophoresis of proteins.
J Biol Chem. 1975 May 25;250(10):4007-21
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Caulobacter crescentus RNA polymerase. Purification and characterization of holoenzyme and core polymerase.
J Biol Chem. 1977 Jun 25;252(12):4157-65
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Isolation of spontaneously derived mutants of Caulobacter crescentus.
Genetics. 1977 May;86(1):25-32
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Regulation of flagellin synthesis in the cell cycle of caulobacter: dependence on DNA replication.
Cell. 1977 Oct;12(2):393-400
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Envelope-associated nucleoid from Caulobacter crescentus stalked and swarmer cells.
J Bacteriol. 1977 Oct;132(1):294-301
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Caulobacter flagellar organelle: synthesis, compartmentation, and assembly.
J Bacteriol. 1978 Sep;135(3):1062-9
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Isolation and characterization of a temperature-sensitive dnaK mutant of Escherichia coli B.
J Bacteriol. 1979 May;138(2):339-44
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Isolation and characterization of the host protein groE involved in bacteriophage lambda assembly.
J Mol Biol. 1979 Apr 15;129(3):359-73
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Differential membrane phospholipid synthesis during the cell cycle of Caulobacter crescentus.
J Bacteriol. 1980 Jan;141(1):262-9
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Regulation of periodic protein synthesis in the cell cycle: control of initiation and termination of flagellar gene expression.
Cell. 1981 Apr;24(1):49-57
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Positive regulatory gene for temperature-controlled proteins in Escherichia coli.
Biochem Biophys Res Commun. 1981 May 29;100(2):894-900
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Cascades of Sigma factors.
Cell. 1981 Sep;25(3):582-4
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Regulation of polypeptide synthesis during Caulobacter development: two-dimensional gel analysis.
J Bacteriol. 1981 Oct;148(1):163-73
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The B66.0 protein of Escherichia coli is the product of the dnaK+ gene.
J Bacteriol. 1982 Mar;149(3):1175-7
PMID: 7037741
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Genetic control of heat-shock protein synthesis and its bearing on growth and thermal resistance in Escherichia coli K-12.
Proc Natl Acad Sci U S A. 1982 Feb;79(3):860-4
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Antibodies to two major chicken heat shock proteins cross-react with similar proteins in widely divergent species.
Mol Cell Biol. 1982 Mar;2(3):267-74
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Phosphorylation of the major heat shock protein of Dictyostelium discoideum.
Mol Cell Biol. 1982 May;2(5):484-9
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A protein similar to Escherichia coli gro EL is present in Bacillus subtilis.
J Mol Biol. 1982 Jul 15;158(4):731-7
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The heat shock response is self-regulated at both the transcriptional and posttranscriptional levels.
Cell. 1982 Dec;31(3 Pt 2):593-603
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Accumulation of a specific subset of D. melanogaster heat shock mRNAs in normal development without heat shock.
Cell. 1983 Apr;32(4):1161-70
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Two RNA polymerase sigma factors from Bacillus subtilis discriminate between overlapping promoters for a developmentally regulated gene.
Nature. 1983 Apr 28;302(5911):800-4
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The dnaK protein modulates the heat-shock response of Escherichia coli.
Cell. 1983 Sep;34(2):641-6
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The dnaK protein of Escherichia coli possesses an ATPase and autophosphorylating activity and is essential in an in vitro DNA replication system.
Proc Natl Acad Sci U S A. 1983 Nov;80(21):6431-5
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Participation of Escherichia coli K-12 groE gene products in the synthesis of cellular DNA and RNA.
J Bacteriol. 1984 Feb;157(2):694-6
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Major heat shock gene of Drosophila and the Escherichia coli heat-inducible dnaK gene are homologous.
Proc Natl Acad Sci U S A. 1984 Feb;81(3):848-52
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The htpR gene product of E. coli is a sigma factor for heat-shock promoters.
Cell. 1984 Sep;38(2):383-90
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Defining a bacteriophage T4 late promoter: bacteriophage T4 gene 55 protein suffices for directing late promoter recognition.
Proc Natl Acad Sci U S A. 1984 Aug;81(16):5101-5
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Differential expression and positioning of chemotaxis methylation proteins in Caulobacter.
J Mol Biol. 1984 Sep 25;178(3):551-68
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Changing patterns of gene expression during sporulation in yeast.
Proc Natl Acad Sci U S A. 1984 Dec;81(23):7323-7
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The genetics and regulation of heat-shock proteins.
Annu Rev Genet. 1984;18:295-329
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Products of nitrogen regulatory genes ntrA and ntrC of enteric bacteria activate glnA transcription in vitro: evidence that the ntrA product is a sigma factor.
Proc Natl Acad Sci U S A. 1985 Nov;82(22):7525-9
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Transcription of glnA by purified Escherichia coli components: core RNA polymerase and the products of glnF, glnG, and glnL.
Proc Natl Acad Sci U S A. 1985 Dec;82(24):8453-7
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Cleavage of structural proteins during the assembly of the head of bacteriophage T4.
Nature. 1970 Aug 15;227(5259):680-5
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