Other names published for MAS2: MIF2, mitochondrial processing protease alpha subunit, YHR024C
MAS2 LITERATURE TOPICS
- Curated Literature
- Genetics/Cell Biology
- Gene Product Information
- Related Genes/Proteins
- Research Aids
- Genome-wide Analysis
- Proteome-wide Analysis
- Other Topics
- Additional Information
- Literature Curation Summary
- Pubmed Search
- Expanded Pubmed Search
- All genome-wide analysis papers
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| Reference | Other Genes Addressed |
|---|---|
| Horvath SE, et al. (2012) Processing and topology of the yeast mitochondrial phosphatidylserine decarboxylase 1. J Biol Chem 287(44):36744-55 | |
| Mossmann D, et al. (2012) Processing of mitochondrial presequences. Biochim Biophys Acta 1819(9-10):1098-106 | |
| Neupert W (2012) A mitochondrial odyssey. Annu Rev Biochem 81():1-33 | |
| Banci L, et al. (2011) Copper exposure effects on yeast mitochondrial proteome. J Proteomics 74(11):2522-35 | |
| Dvorakova-Hola K, et al. (2010) Glycine-Rich Loop of Mitochondrial Processing Peptidase alpha-Subunit Is Responsible for Substrate Recognition by a Mechanism Analogous to Mitochondrial Receptor Tom20. J Mol Biol 396(5):1197-1210 | |
| Lithgow T and Schneider A (2010) Evolution of macromolecular import pathways in mitochondria, hydrogenosomes and mitosomes. Philos Trans R Soc Lond B Biol Sci 365(1541):799-817 | |
| Szklarczyk R and Huynen MA (2009) Expansion of the human mitochondrial proteome by intra- and inter-compartmental protein duplication. Genome Biol 10(11):R135 | |
| Vogtle FN, et al. (2009) Global analysis of the mitochondrial N-proteome identifies a processing peptidase critical for protein stability. Cell 139(2):428-39 | |
| Habib SJ, et al. (2007) Analysis and prediction of mitochondrial targeting signals. Methods Cell Biol 80:761-81 | |
| Mukhopadhyay A, et al. (2007) Precursor Protein Is Readily Degraded in Mitochondrial Matrix Space if the Leader Is Not Processed by Mitochondrial Processing Peptidase. J Biol Chem 282(51):37266-75 | |
| Neupert W and Herrmann JM (2007) Translocation of proteins into mitochondria. Annu Rev Biochem 76:723-49 | |
| Reinders J, et al. (2006) Toward the complete yeast mitochondrial proteome: multidimensional separation techniques for mitochondrial proteomics. J Proteome Res 5(7):1543-54 | |
| Oshima T, et al. (2005) Recognition and processing of a nuclear-encoded polyprotein precursor by mitochondrial processing peptidase. Biochem J 385(Pt 3):755-61 | |
| Chan EW, et al. (2004) Developing photoactive affinity probes for proteomic profiling: hydroxamate-based probes for metalloproteases. J Am Chem Soc 126(44):14435-46 | |
| Sickmann A, et al. (2003) The proteome of Saccharomyces cerevisiae mitochondria. Proc Natl Acad Sci U S A 100(23):13207-12 | |
| van der Bliek AM and Koehler CM (2003) A mitochondrial rhomboid protease. Dev Cell 4(6):769-70 | |
| Gakh O, et al. (2002) Mitochondrial processing peptidases. Biochim Biophys Acta 1592(1):63-77 | |
| Mukhopadhyay A, et al. (2002) In vitro evidence of inhibition of mitochondrial protease processing by HIV-1 protease inhibitors in yeast: a possible contribution to lipodystrophy syndrome. Mitochondrion 1(6):511-8 | |
| Gakh O, et al. (2001) Substrate binding changes conformation of the alpha-, but not the beta-subunit of mitochondrial processing peptidase. Arch Biochem Biophys 385(2):392-6 | |
| Nagao Y, et al. (2000) Glycine-rich region of mitochondrial processing peptidase alpha-subunit is essential for binding and cleavage of the precursor proteins. J Biol Chem 275(44):34552-6 | |
| Adamec J, et al. (1999) Complementation between mitochondrial processing peptidase (MPP) subunits from different species. Arch Biochem Biophys 370(1):77-85 | |
| Branda SS, et al. (1999) Yeast and human frataxin are processed to mature form in two sequential steps by the mitochondrial processing peptidase. J Biol Chem 274(32):22763-9 | |
| Gordon DM, et al. (1999) Maturation of frataxin within mammalian and yeast mitochondria: one-step processing by matrix processing peptidase. Hum Mol Genet 8(12):2255-62 | |
| Nelson N (1999) Metal ion transporters and homeostasis. EMBO J 18(16):4361-71 | |
| Kojima K, et al. (1998) Cooperative formation of a substrate binding pocket by alpha- and beta-subunits of mitochondrial processing peptidase. J Biol Chem 273(49):32542-6 | |
| Shimokata K, et al. (1998) Role of alpha-subunit of mitochondrial processing peptidase in substrate recognition. J Biol Chem 273(39):25158-63 | |
| Kubrich M, et al. (1995) Genetic and biochemical dissection of the mitochondrial protein-import machinery. Curr Genet 27(5):393-403 | |
| West AH, et al. (1992) Two related genes encoding extremely hydrophobic proteins suppress a lethal mutation in the yeast mitochondrial processing enhancing protein. J Biol Chem 267(34):24625-33 | |
| Yang MJ, et al. (1991) The MAS-encoded processing protease of yeast mitochondria. Interaction of the purified enzyme with signal peptides and a purified precursor protein. J Biol Chem 266(10):6416-23 | |
| Geli V, et al. (1990) The MAS-encoded processing protease of yeast mitochondria. Overproduction and characterization of its two nonidentical subunits. J Biol Chem 265(31):19216-22 |





