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Emde, T.

Publications and source records attributed to Emde, T..

2 recordsLinked to original sources

Monomer and dimer structures of cytochrome bo3 ubiquinol oxidase from Escherichia coli

The E. coli cytochrome bo3 ubiquinol oxidase is a four-subunit heme-copper oxidase that serves as a proton pump in the E. coli aerobic respiratory chain. Despite many mechanistic studies on this protein, it is unclear whether this ubiquinol oxidase functions as a monomer, or as a dimer in a manner similar to its eukaryotic counterparts - the mitochondrial electron transport complexes. In this study, we determined the monomeric and dimeric structures of the E. coli cytochrome bo3 ubiquinol oxidase reconstituted in amphipol by cryogenic electron microscopy single particle reconstruction (cryo-EM SPR) to a resolution of 3.15 [A] and 3.46 [A], respectively. We have discovered that the protein can form a dimer in C2 symmetry, with the dimerization interface maintained by interactions between the subunit II of one monomer and the subunit IV of the other monomer. Moreover, the dimerization does not induce significant structural changes in each monomer, except the movement of a loop in subunit IV (residues 67-74).

biophysics↗

The His-tag as a decoy modulating preferred orientation in cryoEM

The His-tag is a widely used affinity tag that facilitates purification by means of affinity chromatography of recombinant proteins for functional and structural studies. We show here that His-tag presence affects how coproheme decarboxylase interacts with the water-air interface during grid preparation for cryoEM. Depending on His-tag presence or absence, we observe significant changes in patterns of preferred orientation. The analysis of particle orientations suggests that His-tag presence can mask the hydrophobic patches on a proteins surface that mediate the interactions with the water-air interface, while the hydrophobic linker between a His-tag and the coding sequence of the protein may enhance other interactions with water-air interface. Our observations suggest that tagging, including rational design of the linkers between an affinity tag and a protein of interest, offer a promising approach to modulating interactions with the water-air interface. SynopsisA His-tag affects the interactions of particles with the water-air interface in cryo-electron microscopy (cryoEM) single particle reconstruction (SPR), and thus may be used to modulate these interactions, including inducing changes in patterns of preferred orientation.

biophysics↗