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Updated: Jun 22, 2026

Analysis of RNA Processing Reactions Using Cell Free Systems: 3' End Cleavage of Pre-mRNA Substrates in vitro
Published on: May 3, 2014
RNase MRP is required for entry of 35S precursor rRNA into the canonical processing pathway
Lasse Lindahl1, Ananth Bommankanti, Xing Li
1Department of Biological Sciences, University of Maryland, Baltimore County, Baltimore, Maryland 21250, USA. lindahl@umbc.edu
Abstract:
RNase MRP is a nucleolar RNA-protein enzyme that participates in the processing of rRNA during ribosome biogenesis. Previous experiments suggested that RNase MRP makes a nonessential cleavage in the first internal transcribed spacer. Here we report experiments with new temperature-sensitive RNase MRP mutants in Saccharomyces cerevisiae that show that the abundance of all early intermediates in the processing pathway is severely reduced upon inactivation of RNase MRP. Transcription of rRNA continues unabated as determined by RNA polymerase run-on transcription, but the precursor rRNA transcript does not accumulate, and appears to be unstable. Taken together, these observations suggest that inactivation of RNase MRP blocks cleavage at sites A0, A1, A2, and A3, which in turn, prevents precursor rRNA from entering the canonical processing pathway (35S > 20S + 27S > 18S + 25S + 5.8S rRNA). Nevertheless, at least some cleavage at the processing site in the second internal transcribed spacer takes place to form an unusual 24S intermediate, suggesting that cleavage at C2 is not blocked. Furthermore, the long form of 5.8S rRNA is made in the absence of RNase MRP activity, but only in the presence of Xrn1p (exonuclease 1), an enzyme not required for the canonical pathway. We conclude that RNase MRP is a key enzyme for initiating the canonical processing of precursor rRNA transcripts, but alternative pathway(s) might provide a backup for production of small amounts of rRNA.
Insights
RNase MRP is crucial for initiating rRNA processing during ribosome biogenesis. Its inactivation blocks early steps, but alternative pathways may backup rRNA production.
Area of Science:
- Molecular Biology
- Cell Biology
- Biochemistry
Background:
- RNase MRP is a nucleolar RNA-protein enzyme.
- It plays a role in rRNA processing and ribosome biogenesis.
- Previous studies suggested a nonessential role in rRNA processing.
Purpose of the Study:
- To investigate the essentiality of RNase MRP in rRNA processing.
- To identify the specific roles of RNase MRP in the canonical rRNA processing pathway.
- To explore alternative rRNA processing pathways.
Main Methods:
- Utilized temperature-sensitive RNase MRP mutants in Saccharomyces cerevisiae.
- Performed RNA polymerase run-on transcription assays.
- Analyzed rRNA processing intermediates and products.
Main Results:
- Inactivation of RNase MRP severely reduced early rRNA processing intermediates.
- rRNA transcription remained active, but precursor rRNA was unstable.
- Cleavage at sites A0, A1, A2, and A3 was blocked, preventing canonical processing.
- Alternative cleavage at C2 formed a 24S intermediate.
- Long 5.8S rRNA was produced via an Xrn1p-dependent pathway.
Conclusions:
- RNase MRP is essential for initiating the canonical rRNA processing pathway.
- Alternative pathways may compensate for RNase MRP function, producing small amounts of rRNA.
- The enzyme is critical for efficient ribosome biogenesis.
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