MidA is a putative methyltransferase that is required for mitochondrial complex I function

Dictyostelium and human MidA are homologous proteins that belong to a family of proteins of unknown function called DUF185. Using yeast two-hybrid screening and pull-down experiments, we showed that both proteins interact with the mitochondrial complex I subunit NDUFS2. Consistent with this, Dictyos...

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Veröffentlicht in:Journal of cell science 2010-05, Vol.123 (10), p.1674-1683
Hauptverfasser: Carilla-Latorre, Sergio, Gallardo, M. Esther, Annesley, Sarah J, Calvo-Garrido, Javier, Graña, Osvaldo, Accari, Sandra L, Smith, Paige K, Valencia, Alfonso, Garesse, Rafael, Fisher, Paul R, Escalante, Ricardo
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Sprache:eng
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Zusammenfassung:Dictyostelium and human MidA are homologous proteins that belong to a family of proteins of unknown function called DUF185. Using yeast two-hybrid screening and pull-down experiments, we showed that both proteins interact with the mitochondrial complex I subunit NDUFS2. Consistent with this, Dictyostelium cells lacking MidA showed a specific defect in complex I activity, and knockdown of human MidA in HEK293T cells resulted in reduced levels of assembled complex I. These results indicate a role for MidA in complex I assembly or stability. A structural bioinformatics analysis suggested the presence of a methyltransferase domain; this was further supported by site-directed mutagenesis of specific residues from the putative catalytic site. Interestingly, this complex I deficiency in a Dictyostelium midA⁻ mutant causes a complex phenotypic outcome, which includes phototaxis and thermotaxis defects. We found that these aspects of the phenotype are mediated by a chronic activation of AMPK, revealing a possible role of AMPK signaling in complex I cytopathology.
ISSN:0021-9533
1477-9137
DOI:10.1242/jcs.066076