Mutational analysis of functional domains in Mrs2p, the mitochondrial Mg2+ channel protein of Saccharomyces cerevisiae
- 3 March 2006
- journal article
- Published by Wiley in The FEBS Journal
- Vol. 273 (6) , 1198-1209
- https://doi.org/10.1111/j.1742-4658.2006.05157.x
Abstract
The nuclear gene MRS2 in Saccharomyces cerevisiae encodes an integral protein (Mrs2p) of the inner mitochondrial membrane. It forms an ion channel mediating influx of Mg2+ into mitochondria. Orthologues of Mrs2p have been shown to exist in other lower eukaryotes, in vertebrates and in plants. Characteristic features of the Mrs2 protein family and the distantly related CorA proteins of bacteria are the presence of two adjacent transmembrane domains near the C terminus of Mrs2p one of which ends with a F/Y‐G‐M‐N motif. Two coiled‐coil domains and several conserved primary sequence blocks in the central part of Mrs2p are identified here as additional characteristics of the Mrs2p family. Gain‐of‐function mutations obtained upon random mutagenesis map to these conserved sequence blocks. They lead to moderate increases in mitochondrial Mg2+ concentrations and concomitant positive effects on splicing of mutant group II intron RNA. Site‐directed mutations in several conserved sequences reduce Mrs2p‐mediated Mg2+ uptake. Mutants with strong effects on mitochondrial Mg2+ concentrations also have decreased group II intron splicing. Deletion of a nonconserved basic region, previously invoked for interaction with mitochondrial introns, lowers intramitochondrial Mg2+ levels as well as group II intron splicing. Data presented support the notion that effects of mutations in Mrs2p on group II intron splicing are a consequence of changes in steady‐state mitochondrial Mg2+ concentrations.Keywords
This publication has 16 references indexed in Scilit:
- Mrs2p is an essential component of the major electrophoretic Mg2+ influx system in mitochondriaThe EMBO Journal, 2003
- Comparison of In Vivo Selection and Rational Design of Heterodimeric Coiled CoilsStructure, 2002
- Insertion of Bitopic Membrane Proteins into the Inner Membrane of Mitochondria Involves an Export Step from the MatrixPublished by Elsevier ,2002
- Mitochondrial Mg2+ homeostasis is critical for group II intron splicing in vivoGenes & Development, 2001
- The Yeast Plasma Membrane Protein Alr1 Controls Mg2+ Homeostasis and Is Subject to Mg2+-dependent Control of Its Synthesis and DegradationJournal of Biological Chemistry, 2001
- The Human Mitochondrial Mrs2 Protein Functionally Substitutes for Its Yeast Homologue, A Candidate Magnesium TransporterGenomics, 2001
- Regulation of cellular magnesiumFrontiers in Bioscience-Landmark, 2000
- Mutant alleles of the MRS2 gene of yeast nuclear DNA suppress mutations in the catalytic core of a mitochondrial group II intronJournal of Molecular Biology, 1998
- PROTEIN IMPORT INTO MITOCHONDRIAAnnual Review of Biochemistry, 1997
- Three nuclear genes suppress a yeast mitochondrial splice defect when present in high copy numberCurrent Genetics, 1987