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  • Faculty of Science / Naturvetenskapliga fakulteten
  • Department of Cell and Molecular Biology / Institutionen för cell- och molekylärbiologi (-2011)
  • Doctoral Theses / Doktorsavhandlingar Institutionen för cell- och molekylärbiologi
  • Redigera dokument
  •   Startsida
  • Faculty of Science / Naturvetenskapliga fakulteten
  • Department of Cell and Molecular Biology / Institutionen för cell- och molekylärbiologi (-2011)
  • Doctoral Theses / Doktorsavhandlingar Institutionen för cell- och molekylärbiologi
  • Redigera dokument
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The Importance of a Fifth Element in Transcription: Transcriptional Discrimination in Escherichia coli

Sammanfattning
Upon growth arrest of the bacterium Escherichia coli, RNA polymerase (Es70) is redirected from transcribing genes encoding the protein synthesizing system (PSS) to those involved in maintenance and stress resistance. The small nucleotide ppGpp, which is directly targeting Es70, is a key regulatory molecule required for this response. In addition, the protein DksA has been hypothesized to be required for the regulatory function of ppGpp. Cells defective in the synthesis of either ppGpp or DksA do not undergo a shift in gene expression upon growth arrest and are deficient in maintenance-related activities. The underlying mechanism of how regulation of gene expression is exerted by ppGpp and DksA is the main focus of this thesis. -Text removed from public version- On top of a direct role of ppGpp in regulating gene expression, ppGpp can potentially affect gene regulation passively by modulating the levels of free Es70 in the cell. Using a mini-cell approach, I demonstrate an inverse correlation between the levels of ppGpp and free Es70. Thus, I hypothesize that ppGpp contribute to the redistribution of Es70 at promoters during growth arrest also by decreasing free Es70 levels, which would negatively affect promoters requiring high levels of Es70 for efficient transcription, such as those of the PSS.
Delarbeten
I. Identical, Independent, and Opposing Roles of ppGpp and DksA in Escherichia coli. Magnusson, L. U. 1), B. Gummesson 1), P. Joksimović, A. Farewell and T. Nyström J. Bacteriol. (2007) 189(14): 5193-5202. 1) contributed equally.::PMID::17496080
 
II. Increased RNA polymerase availability directs resources towards growth at the expense of maintenance. Gummesson, B. 1), L. U. Magnusson 1), M. Lovmar, K. Kvint, Ö. Persson, M. Ballesteros, A. Farewell and T. Nyström EMBO J (2009) 28(15): 2209-2219. 1) contributed equally.::PMID::19574956
 
III. Unpublished Manuscript (2011) Gummesson, B., M. Lovmar and T. Nyström
 
Examinationsnivå
Doctor of Philosophy
Universitet
Göteborgs universitet. Naturvetenskapliga fakulteten
Institution
Department of Cell and Molecular Biology ; Institutionen för cell- och molekylärbiologi
Disputation
Fredagen den 29 april 2011, kl. 10.00 i föreläsningssalen Arvid Carlsson, Medicinaregatan 3, Göteborg
Datum för disputation
2011-04-29
E-post
bertil.gummesson@cmb.gu.se
URL:
http://hdl.handle.net/2077/24934
Samlingar
  • Doctoral Theses / Doktorsavhandlingar Institutionen för cell- och molekylärbiologi
  • Doctoral Theses from University of Gothenburg / Doktorsavhandlingar från Göteborgs universitet
Fil(er)
Thesis (690.3Kb)
Spikablad (109.9Kb)
Datum
2011-04-08
Författare
Gummesson, Bertil
Nyckelord
Escherichia coli
RNA polymerase
ppGpp
DksA
stringent response
passive regulation
Publikationstyp
Doctoral thesis
ISBN
978-91-628-8280-8
Språk
eng
Metadata
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