Conserved in situ arrangement of complex I and III<sub>2</sub> in mitochondrial respiratory chain supercomplexes of mammals, yeast, and plants.

Davies, Karen M; Blum, Thorsten B; Kühlbrandt, Werner · Proc Natl Acad Sci U S A · 2018

basic_science · Level V

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Abstract

We used electron cryo-tomography and subtomogram averaging to investigate the structure of complex I and its supramolecular assemblies in the inner mitochondrial membrane of mammals, fungi, and plants. Tomographic volumes containing complex I were averaged at ∼4 nm resolution. Principal component analysis indicated that ∼60% of complex I formed a supercomplex with dimeric complex III, while ∼40% were not associated with other respiratory chain complexes. The mutual arrangement of complex I and III<sub>2</sub> was essentially conserved in all supercomplexes investigated. In addition, up to two copies of monomeric complex IV were associated with the complex I<sub>1</sub>III<sub>2</sub> assembly in bovine heart and the yeast <i>Yarrowia lipolytica</i>, but their positions varied. No complex IV was detected in the respiratory supercomplex of the plant <i>Asparagus officinalis</i> Instead, an ∼4.5-nm globular protein density was observed on the matrix side of the complex I membrane arm, which we assign to γ-carbonic anhydrase. Our results demonstrate that respiratory chain supercomplexes in situ have a conserved core of complex I and III<sub>2</sub>, but otherwise their stoichiometry and structure varies. The conserved features of supercomplex assemblies indicate an important role in respiratory electron transfer.

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