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  The mitochondrial amidoxime-reducing component (mARC1) is a novel signal-anchored protein of the outer mitochondrial membrane

Klein, J. M., Busch, J. D., Potting, C., Baker, M. J., Langer, T., & Schwarz, G. (2012). The mitochondrial amidoxime-reducing component (mARC1) is a novel signal-anchored protein of the outer mitochondrial membrane. J Biol Chem, 287(51), 42795-803. doi:10.1074/jbc.M112.419424.

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Genre: Zeitschriftenartikel

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https://www.ncbi.nlm.nih.gov/pubmed/23086957 (beliebiger Volltext)
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 Urheber:
Klein, J. M., Autor
Busch, J. D., Autor
Potting, C., Autor
Baker, M. J., Autor
Langer, T.1, Autor           
Schwarz, G., Autor
Affiliations:
1Department Langer - Mitochondrial Proteostasis, Max Planck Institute for Biology of Ageing, Max Planck Society, ou_3393994              

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Schlagwörter: Adenosine Triphosphate/metabolism Amino Acid Motifs Amino Acid Sequence Cell Line Coenzymes Humans Hydrophobic and Hydrophilic Interactions Membrane Potential, Mitochondrial Metalloproteins Mitochondrial Membranes/*metabolism Mitochondrial Proteins/chemistry/*metabolism Molecular Sequence Data Oxidoreductases/chemistry/*metabolism *Protein Sorting Signals Protein Structure, Quaternary Protein Structure, Tertiary Protein Transport Pteridines Subcellular Fractions/metabolism
 Zusammenfassung: The mitochondrial amidoxime-reducing component (mARC) was recently discovered as the fifth eukaryotic molybdenum cofactor-containing enzyme. The human genome encodes two mARC proteins, mARC1 and mARC2, sharing significant homologies with respect to sequence and function. Whereas mARC2 was identified as a mitochondrial enzyme, the subcellular localization of mARC1 has remained uncharacterized, although the similarity of both proteins suggested identical subcellular localizations. In addition, neither mARC1 nor mARC2 could be attributed unambiguously to one of the four mitochondrial subcompartments. Accordingly, mechanisms triggering the subcellular distribution of both enzymes have been unexplored so far. Here, we shed light on the subcellular localization of mARC1 and demonstrate that it is integrated into the outer mitochondrial membrane. The C-terminal catalytic domain of the protein remains exposed to the cytosol and confers an N((in))-C((out)) membrane orientation of mARC1. This localization is triggered by the N terminus of the enzyme, being composed of a weak N-terminal mitochondrial targeting signal and a downstream transmembrane helix. We demonstrate the transmembrane domain of mARC1 to be sufficient for mitochondrial targeting and the N-terminal targeting signal to function as a supportive receptor for the outer mitochondrial membrane. According to its localization and targeting mechanism, we classify mARC1 as a novel signal-anchored mitochondrial protein. During mitochondrial import, mARC1 is not processed, and membrane integration proceeds membrane potential independently but requires external ATP, which finally results in the assembly of mARC1 into high oligomeric protein complexes.

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 Datum: 2012-12-142012-10-23
 Publikationsstatus: Erschienen
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 Identifikatoren: Anderer: 23086957
DOI: 10.1074/jbc.M112.419424
ISSN: 1083-351X (Electronic)0021-9258 (Linking)
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Titel: J Biol Chem
Genre der Quelle: Zeitschrift
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Ort, Verlag, Ausgabe: -
Seiten: - Band / Heft: 287 (51) Artikelnummer: - Start- / Endseite: 42795 - 803 Identifikator: -