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  2. Bacterial transcription - Wikipedia

    en.wikipedia.org/wiki/Bacterial_transcription

    Bacteria have a σ-factor that detects and binds to promoter sites but eukaryotes do not need a σ-factor. Instead, eukaryotes have transcription factors that allow the recognition and binding of promoter sites. [2] Overall, transcription within bacteria is a highly regulated process that is controlled by the integration of many signals at a ...

  3. General transcription factor - Wikipedia

    en.wikipedia.org/wiki/General_transcription_factor

    A sigma factor is a protein needed only for initiation of RNA synthesis in bacteria. [12] Sigma factors provide promoter recognition specificity to the RNA polymerase (RNAP) and contribute to DNA strand separation, then dissociating from the RNA polymerase core enzyme following transcription initiation. [13]

  4. GntR-like bacterial transcription factors - Wikipedia

    en.wikipedia.org/wiki/GntR-like_bacterial...

    Many bacterial transcription regulation proteins bind DNA through a helix-turn-helix (HTH) motif, which can be classified into subfamilies on the basis of sequence similarities. The HTH GntR family has many members distributed among diverse bacterial groups that regulate various biological processes.

  5. Transcription (biology) - Wikipedia

    en.wikipedia.org/wiki/Transcription_(biology)

    General transcription factors bind to the promoter. When a transcription factor is activated by a signal (here indicated as phosphorylation shown by a small red star on a transcription factor on the enhancer) the enhancer is activated and can now activate its target promoter. The active enhancer is transcribed on each strand of DNA in opposite ...

  6. Sigma factor - Wikipedia

    en.wikipedia.org/wiki/Sigma_factor

    A sigma factorfactor or specificity factor) is a protein needed for initiation of transcription in bacteria. [1] [2] It is a bacterial transcription initiation factor that enables specific binding of RNA polymerase (RNAP) to gene promoters. It is homologous to archaeal transcription factor B and to eukaryotic factor TFIIB. [3]

  7. Transcription factor - Wikipedia

    en.wikipedia.org/wiki/Transcription_factor

    Other transcription factors differentially regulate the expression of various genes by binding to enhancer regions of DNA adjacent to regulated genes. These transcription factors are critical to making sure that genes are expressed in the right cell at the right time and in the right amount, depending on the changing requirements of the organism.

  8. Transcriptional regulation - Wikipedia

    en.wikipedia.org/wiki/Transcriptional_regulation

    transcription factor – a substance, such as a protein, that contributes to the cause of a specific biochemical reaction or bodily process; promoter – a region of DNA that initiates transcription of a particular gene; Sigma factor – specialized bacterial co-factors that complex with RNA Polymerase and encode sequence specificity

  9. Bacterial one-hybrid system - Wikipedia

    en.wikipedia.org/wiki/Bacterial_one-hybrid_system

    The host E. coli strain being used must lack the bacterial homologues of these biosynthetic genes (HIS3 and URA3 ). The bacterial one-hybrid (B1H) system is a method for identifying the sequence-specific target site of a DNA-binding domain. In this system, a given transcription factor (TF) is expressed as a fusion to a subunit of RNA polymerase.