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Function of stress sigma factors of RNA polymerase SigD, SigE, SigH and SigM in transcription regulation network of Corynebacterium glutamicum
Dostálová, Hana ; Pátek, Miroslav (advisor) ; Bobek, Jan (referee) ; Halgašová, Nora (referee)
Grampositive bacterium Corynebacterium glutamicum is an important industrial producer of amido acids and other metabolites. Its genome encodes 7 sigma (σ) subunits of RNA polymerase: primary factor σA , primary-like σB and five alternative sigma factors, σC , σD , σE , σH and σM (sigma factors with extracytoplasmic function). This study is focused on revealing so far unknown regulons of stress sigma factors or closer description of regulons whose genes are controled by σD , σE , σH and σM . These factors were partially described for their activity during surface (σD and σE ), heat (σE , σH and σM ) and oxidative (σH and σM ) stress response. We assumed that the genes of each regulon are transcribed from promoters of a single class. For the purpose of detailed promoter analysis, it was necessary to develop methods which can quickly and reliably assign sigma factor to particular promoters and, thus, respective genes. For this purpose, a combination of in vivo (two-plasmid system) and in vitro (in vitro transcription) techniques was developed that allow to specify this assignment. We identified 9 σH /σE - promiscuous promoters (PamtR, Pcg0378, Pcg1121, Pcg3309, Pcg3344, PclgR, PdnaJ, PdnaK and PsigB), 7 σD /σH - promiscuous promoters (Pcg0607, Pcg2047, Pcmt2, PfadD2, Plpd, PlppS and PrsdA) a 9 σH /σM...

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