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Isolation of Ribosome Bound Nascent Polypeptides in vitro to Identify Translational Pause Sites Along mRNA
Published on: July 6, 2012
Specific transcriptional pausing activates polyadenylation in a coupled in vitro system
1Sir William Dunn School of Pathology, University of Oxford, United Kingdom.
We developed a coupled system to study RNA polymerase II termination. Specific G-rich sequences pause transcription and activate RNA polyadenylation, revealing a link between pausing and processing.
Area of Science:
- Molecular Biology
- Gene Expression
- RNA Processing
Background:
- RNA polymerase II (Pol II) termination is crucial for gene expression.
- Termination is linked to the polyadenylation of nascent RNA.
- The role of specific DNA sequences in coupling transcription and polyadenylation is not fully understood.
Purpose of the Study:
- To investigate the mechanism of Pol II termination.
- To determine the role of G-rich sequences and transcription factor MAZ in RNA processing.
- To explore the relationship between Pol II pausing and polyadenylation.
Main Methods:
- Development of a coupled in vitro transcription-polyadenylation system.
- Analysis of G-rich sequences' effect on Pol II pausing and polyadenylation.
- Comparison with uncoupled cleavage assays and pausing induced by other proteins.
Main Results:
- G-rich sequences, identified as MAZ binding sites, pause Pol II and activate upstream polyadenylation.
- These sequences specifically enhance polyadenylation, not affecting uncoupled cleavage.
- Pol II pausing induced by other means did not activate polyadenylation, highlighting the specific role of G-rich sequences.
- G-rich sequences promote intrinsic Pol II pausing.
Conclusions:
- G-rich sequences play a specific role in activating polyadenylation.
- These sequences modulate cotranscriptional RNA processing events by inducing pausing.
- The findings reveal a mechanism linking transcription pausing to RNA polyadenylation and termination.
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