Studies of Interaction Between the Heat Shock Sigma Factor, O23, and Core RNA Polymerase in Escherichia Coli

Studies of Interaction Between the Heat Shock Sigma Factor, O23, and Core RNA Polymerase in Escherichia Coli
Title Studies of Interaction Between the Heat Shock Sigma Factor, O23, and Core RNA Polymerase in Escherichia Coli PDF eBook
Author Daniel M. Joo
Publisher
Pages 308
Release 1997
Genre
ISBN

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Interaction of Escherichia Coli RNA Polymerase Holoenzyme Containing Sigma 32 with Promoters for Heat Shock Genes

Interaction of Escherichia Coli RNA Polymerase Holoenzyme Containing Sigma 32 with Promoters for Heat Shock Genes
Title Interaction of Escherichia Coli RNA Polymerase Holoenzyme Containing Sigma 32 with Promoters for Heat Shock Genes PDF eBook
Author Deborah Walker Cowing
Publisher
Pages 392
Release 1988
Genre
ISBN

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Studying the Interaction of the E. Coli Sigma Factors with Core RNA Polymerase Using LRET

Studying the Interaction of the E. Coli Sigma Factors with Core RNA Polymerase Using LRET
Title Studying the Interaction of the E. Coli Sigma Factors with Core RNA Polymerase Using LRET PDF eBook
Author Bryan T. Glaser
Publisher
Pages 298
Release 2008
Genre
ISBN

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Studies on the Function and Regulation of Two Sigma Subunits of Escherichia Coli RNA Polymerase

Studies on the Function and Regulation of Two Sigma Subunits of Escherichia Coli RNA Polymerase
Title Studies on the Function and Regulation of Two Sigma Subunits of Escherichia Coli RNA Polymerase PDF eBook
Author Alan Davis Grossman
Publisher
Pages 580
Release 1984
Genre Escherichia coli
ISBN

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Interaction of Escherichia Coli Sigma Factors with Core RNA Polymerase

Interaction of Escherichia Coli Sigma Factors with Core RNA Polymerase
Title Interaction of Escherichia Coli Sigma Factors with Core RNA Polymerase PDF eBook
Author Larry C. Anthony
Publisher
Pages 246
Release 2003
Genre
ISBN

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Molecular Interactions Between the Transcription Factor Crl and Sigma S RNA Polymerase Holoenzyme in Escherichia Coli

Molecular Interactions Between the Transcription Factor Crl and Sigma S RNA Polymerase Holoenzyme in Escherichia Coli
Title Molecular Interactions Between the Transcription Factor Crl and Sigma S RNA Polymerase Holoenzyme in Escherichia Coli PDF eBook
Author
Publisher
Pages 0
Release 2013
Genre
ISBN

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Bacteria must change their cellular composition in response to changing environmental conditions and stress. They implement these changes by altering gene expression and/or protein activity. Central to changes in gene expression during stress responses is regulation of transcription. In bacteria, transcription is directed by a suite of RNA polymerase (RNAP) holoenzymes, comprised of a core enzyme, possessing the catalytic activity for RNA synthesis, and one of a collection of transcription initiation factors, known as Ï3 factors, which recognizes promoter DNA sequences upstream of genes. Increasing the formation of a particular type of RNAP holoenzyme by switching the Ï3 factor will lead to expression of its cognate regulon. My thesis research focuses on deciphering the complex molecular interactions between the transcription factor Crl and the general stress response sigma factor, Sigma S, in order to understand Escherichia coli's response to stress at the molecular level. Crl is a small (133 amino acids in E. coli) protein that stimulates transcription mediated by Sigma S. At the outset of my research, little was known about how Crl interacts with the transcription machinery to stimulate Sigma S-mediated transcription. I used a combination of biochemical, genetic, and molecular biological techniques in vitro and in vivo to identify key interactions and gain insight into the mechanism of transcriptional regulation by Crl. I identify a key binding determinant (the DPE motif) in Sigma S conserved domain 2 underlying its specific recognition by Crl. I demonstrate directly that Crl requires this determinant for positive regulation of Sigma S-mediated transcription and to enhance Sigma S holoenzyme formation. I made the primary Sigma factor recognizable by Crl by substitution of the DPE motif along with deletion of a large non-conserved region (NCR). I also localized the area of Crl required for the interaction with Sigma S to Crl's conserved central cleft. Finally, I identified an interaction between the Beta prime subunit of core RNAP and Crl, which occurs only in the context of the holoenzyme, that has begun to clarify the mechanism by which Crl functions as a Sigma S-specific RNAP holoenzyme assembly factor.

Cumulated Index Medicus

Cumulated Index Medicus
Title Cumulated Index Medicus PDF eBook
Author
Publisher
Pages 1808
Release 2000
Genre Medicine
ISBN

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