10.9
Transcription activators are proteins that are responsible for allowing RNA polymerase to initiate transcription. They have two essential domains- one that binds to DNA and another one that activates transcription.
The DNA-binding domains contain one of several characteristic structural motifs, including common motifs like the helix-turn-helix, zinc finger, and leucine zipper structures.
A helix-turn-helix domain is made up of two alpha helices joined together by an amino-acid chain that represents the turn. One helix is responsible for recognizing the DNA sequence and fits into the major groove. These proteins bind to DNA as dimers.
A zinc finger contains an alpha helix and a two-strand beta sheet held together by a zinc atom. The helix binds to the major groove with the help of two histidines in its amino acid chain.
A leucine zipper is made up of two monomers that interact with each other in the shape of a Y that binds to the DNA. The monomers consist of leucine at every seventh position at the C-terminal end which interacts with the leucine on the opposite monomer. The N-terminal of the monomer which is made up of basic motifs binds to the DNA.
The other essential domain in the activator, the transcription activating domain, recruits co-activators, essential proteins that mediate the binding of activators to RNA polymerase. These co-activators promote transcription through several mechanisms, such as histone modification, which results in increased access of the transcriptional machinery to the DNA.
Activators can also send signals via their co-activators to activate RNA polymerase and initiate transcription.
In some cases, activators are essential to the elongation of the transcript. Some polymerases pause transcription after a few nucleotides and need the presence of an activator to restart transcription.
Transcription of a single gene can be regulated by several different activators. When more than one activator is involved in the regulation of transcription, they can act synergistically to drastically increase the rate of transcription in comparison to that of individual activators.
Transcription activators are proteins that promote the transcription of genes from DNA to RNA. In most cases, these proteins contain two separate doma…
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