| Literature DB >> 31601645 |
Aneta Ivanova1,2, Mabel Gill-Hille1,2, Shaobai Huang1,2, Rui M Branca3, Beata Kmiec4, Pedro F Teixeira4, Janne Lehtiö3, James Whelan5, Monika W Murcha6,2.
Abstract
Complex I biogenesis requires the expression of both nuclear and mitochondrial genes, the import of proteins, cofactor biosynthesis, and the assembly of at least 49 individual subunits. Assembly factors interact with subunits of Complex I but are not part of the final holocomplex. We show that in Arabidopsis (Arabidopsis thaliana), a mitochondrial matrix protein (EMB1793, At1g76060), which we term COMPLEX I ASSEMBLY FACTOR 1 (CIAF1), contains a LYR domain and is required for Complex I assembly. T-DNA insertion mutants of CIAF1 lack Complex I and the Supercomplex I+III. Biochemical characterization shows that the assembly of Complex I is stalled at 650 and 800 kD intermediates in mitochondria isolated from ciaf1 mutant lines.I. Yeast-two-hybrid interaction and complementation assays indicate that CIAF1 specifically interacts with the 23-kD TYKY-1 matrix domain subunit of Complex I and likely plays a role in Fe-S insertion into this subunit. These data show that CIAF1 plays an essential role in assembling the peripheral matrix arm Complex I subunits into the Complex I holoenzyme.Entities:
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Year: 2019 PMID: 31601645 PMCID: PMC6878026 DOI: 10.1104/pp.19.00822
Source DB: PubMed Journal: Plant Physiol ISSN: 0032-0889 Impact factor: 8.340