[No authors listed]
The Saccharomyces cerevisiae mitochondrial respiratory supercomplex factorâ 2 (Rcf2) plays a role in assembly of supercomplexes composed of cytochromeâ bc1 (complexâ III) and cytochromeâ c oxidase (complexâ IV). We expressed the Rcf2 protein in Escherichia coli, refolded it, and reconstituted it into dodecylphosphocholine (DPC) micelles. The structural properties of Rcf2 were studied by solution NMR, and near complete backbone assignment of Rcf2 was achieved. The secondary structure of Rcf2 contains seven helices, of which five are putative transmembrane (TM) helices, including, unexpectedly, a region formed by a charged 20-residue helix at the Câ terminus. Further studies demonstrated that Rcf2 forms a dimer, and the charged TM helix is involved in this dimer formation. Our results provide a basis for understanding the role of this assembly/regulatory factor in supercomplex formation and function.
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