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Saccharomyces cerevisiae contains an RNase MRP that cleaves at a conserved mitochondrial RNA sequence implicated in
1Department of Developmental Biology, Stanford University School of Medicine, California 94305-5427.
Abstract:
Yeast mitochondrial DNA contains multiple promoters that sponsor different levels of transcription. Several promoters are individually located immediately adjacent to presumed origins of replication and have been suggested to play a role in priming of DNA replication. Although yeast mitochondrial DNA replication origins have not been extensively characterized at the primary sequence level, a common feature of these putative origins is the occurrence of a short guanosine-rich region in the priming strand downstream of the transcriptional start site. This situation is reminiscent of vertebrate mitochondrial DNA origins and raises the possibility of common features of origin function. In the case of human and mouse cells, there exists an RNA processing activity with the capacity to cleave at a guanosine-rich mitochondrial RNA sequence at an origin; we therefore sought the existence of a yeast endoribonuclease that had such a specificity. Whole cell and mitochondrial extracts of Saccharomyces cerevisiae contain an RNase that cleaves yeast mitochondrial RNA in a site-specific manner similar to that of the human and mouse RNA processing activity RNase MRP. The exact location of cleavage within yeast mitochondrial RNA corresponds to a mapped site of transition from RNA to DNA synthesis. The yeast activity also cleaved mammalian mitochondrial RNA in a fashion similar to that of the mammalian RNase MRPs. The yeast endonuclease is a ribonucleoprotein, as judged by its sensitivity to nucleases and proteinase, and it was present in yeast strains lacking mitochondrial DNA, which demonstrated that all components required for in vitro cleavage are encoded by nuclear genes. We conclude that this RNase is the yeast RNase MRP.
Insights
Researchers discovered a yeast RNase MRP that processes mitochondrial RNA at replication origins. This enzyme is crucial for DNA replication initiation in yeast, similar to its mammalian counterparts.
Area of Science:
- Molecular Biology
- Mitochondrial Genetics
- Enzymology
Background:
- Yeast mitochondrial DNA replication origins are not fully characterized but often feature guanosine-rich regions.
- Vertebrate cells possess RNA processing activities (RNase MRP) that cleave mitochondrial RNA at replication origins.
- This suggests a potential conserved mechanism for DNA replication initiation across species.
Purpose of the Study:
- To identify a yeast endoribonuclease with specificity for guanosine-rich mitochondrial RNA sequences.
- To investigate if yeast possesses an enzyme analogous to mammalian RNase MRP involved in replication priming.
Main Methods:
- Analysis of whole cell and mitochondrial extracts from Saccharomyces cerevisiae.
- Site-specific cleavage assays using yeast and mammalian mitochondrial RNA.
- Biochemical characterization of the responsible enzyme, including nuclease and proteinase sensitivity.
Main Results:
- A yeast RNase was identified that cleaves mitochondrial RNA at a site corresponding to the RNA-to-DNA synthesis transition.
- This yeast activity demonstrated specificity for guanosine-rich sequences, similar to mammalian RNase MRP.
- The yeast enzyme also cleaved mammalian mitochondrial RNA, indicating functional conservation.
Conclusions:
- The identified yeast RNase is functionally and biochemically similar to mammalian RNase MRP.
- This enzyme is essential for priming DNA replication at yeast mitochondrial origins.
- The components of this ribonucleoprotein are encoded by nuclear genes.