Mechanisms of transcription [electronic resource] : the eukaryotic pre-initiation complex / Michael Hampsey.

By: Hampsey, Michael [spk]Material type: FilmFilmSeries: Henry Stewart talksBiomedical & life sciences collection. From DNA to proteins : the multiple levels of regulation: Publisher: London : Henry Stewart Talks, 2020Description: 1 online resource (1 streaming video file (44 min.) : color, sound)Subject(s): Eukaryotic cells -- Genetics | Genetic transcription | RNA polymerases | Transcription factors | Chromatin Assembly and Disassembly | Histone Acetyltransferases | Histone Deacetylases | Histone Methyltransferases | RNA Polymerase II -- genetics | Transcription Factor TFIID | Transcription Factors -- chemistry | Transcription Factors -- physiology | Transcription, Genetic | Transcriptional ActivationOnline resources: Click here to access online | Series
Contents:
Contents: Overview of RNA polymerase II transcription -- Core promoter elements -- Proximal promoters -- Enhancers and silencers -- General transcription factors -- Activators and repressors -- Coactivator complexes -- RNA polymerase II structure and function -- Mechanisms of transcription initiation -- Steroid hormone receptors -- Coactivator complexes, including mediator and TFIID -- Chromatin remodellers including SWI/SNF -- Covalent histone modifiers, including histone acetyltransferases, methyltransferases and deacetylases.
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Animated audio-visual presentation with synchronized narration.

Title from title frames.

Updated version of a talk first published in 2007.

Contents: Overview of RNA polymerase II transcription -- Core promoter elements -- Proximal promoters -- Enhancers and silencers -- General transcription factors -- Activators and repressors -- Coactivator complexes -- RNA polymerase II structure and function -- Mechanisms of transcription initiation -- Steroid hormone receptors -- Coactivator complexes, including mediator and TFIID -- Chromatin remodellers including SWI/SNF -- Covalent histone modifiers, including histone acetyltransferases, methyltransferases and deacetylases.

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Mode of access: World Wide Web.

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