The Analysis of Regulatory DNA: Current Developments, Knowledge and Applications Uncovering Gene Regulation

Author(s): Kenneth W. Berendzen

DOI: 10.2174/9781608054923113010004

A General Introduction To Eukaryotic Transcription And Its Molecular Components

Pp: 3-38 (36)

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The Analysis of Regulatory DNA: Current Developments, Knowledge and Applications Uncovering Gene Regulation

A General Introduction To Eukaryotic Transcription And Its Molecular Components

Author(s): Kenneth W. Berendzen

Pp: 3-38 (36)

DOI: 10.2174/9781608054923113010004

* (Excluding Mailing and Handling)

Abstract

This introductory review aims at summarizing the vast and varied field about how transcript abundance is controlled in eukaryotes. The field of transcriptional regulation is a very exciting one right now. Many new discoveries are turning many concepts we have had about eukaryotic transcription sideways, if not occasionally, upside-down. Furthermore, important topics will be pointed out that are explored in more detail as their own chapters of this eBook. The regulation of transcription is a multi-step process that can be and is regulated at every level, from the access of DNA, to the recruitment and process of transcription, on to the regulation of RNA stability, function and form. The complete introductory review encompasses the first two chapters of this book. The first part of the review focuses on what is currently known and studied with respect to new paradigms for the mechanism of transcription and the protein components that modulate it. The second half of the review covers the canonical core promoter and varied types of promoter classes that are now being revealed through genomic studies.


Keywords: eukaryotic transcription, RNA Polymerase II, Pol II, RNAP II, transcription cycle, Initation, Elongation, Termination, DNA-dependent RNA polymerases, Pol I, Pol III, Pol IV, Pol V, pre-initiation complex (PIC), general transcription factor (GTF), TBP-association factor (TAF), TPB paralogs, positive and negative cofactors, PIC assembly, TATA-binding protein (TBP).

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