| Literature DB >> 26754561 |
Yukiho Osuda1, Kyoko Shinzawa-Itoh2, Kazutoshi Tani3, Shintaro Maeda4, Shinya Yoshikawa1, Tomitake Tsukihara5, Christoph Gerle6.
Abstract
Mitochondrial cytochrome c oxidase utilizes electrons provided by cytochrome c for the active vectorial transport of protons across the inner mitochondrial membrane through the reduction of molecular oxygen to water. Direct structural evidence on the transient cytochrome c oxidase-cytochrome c complex thus far, however, remains elusive and its physiological relevant oligomeric form is unclear. Here, we report on the 2D crystallization of monomeric bovine cytochrome c oxidase with tightly bound cytochrome c at a molar ratio of 1:1 in reconstituted lipid membranes at the basic pH of 8.5 and low ionic strength.Entities:
Keywords: OXPHOS; electron crystallography; electron transport chain; membrane protein; mitochondria; two-dimensional crystal
Mesh:
Substances:
Year: 2016 PMID: 26754561 PMCID: PMC4892887 DOI: 10.1093/jmicro/dfv381
Source DB: PubMed Journal: Microscopy (Oxf) ISSN: 2050-5698 Impact factor: 1.571
Fig. 1.Schematic drawing of the 2D crystallization strategy used in this study. To ensure the highest possible quality of the sample in terms of purity and stability, all 2D crystallization trials were performed exclusively with cytochrome c oxidase that yielded 3D crystals diffracting to better than 2 Å.
Fig. 2.(a) Overview of a typical grid-hole. Almost all membrane sheets showed ordered arrays. The majority of 2D crystals are of vesicular morphology (red arrows) and a far smaller fraction sheet-like (white arrows). Since the sheet-like 2D crystals exhibited sharper diffraction spots, the projection map was calculated solely from these. Scale bar 1 µm. (b) Typical vesicular type 2D crystal. Scale bar 200 nm. (c) Typical sheet-like 2D crystal. Scale bar 200 nm.
Fig. 3.(a) Electron micrograph of a two-dimensional crystal of monomeric bovine cytochrome c oxidase with bound cytochrome c in negative stain, (b) its Fourier transform and (c) a projection map calculated from six two-dimensional crystals with the unit cell parameters, a = 158 Å, b = 81 Å and γ = 90.0° (outlined in red), and the structure of a bovine cytochrome c oxidase monomer (PDB: 1OCC) was manually superimposed. A putatively cytochrome c binding beta-sheet is depicted in red.
Crystallographic table of cytochrome c oxidase in complex with cytochrome c
| Symmetry | |
| Resolution | ∼1/15 Å−1 |
| Overall weighted phase residualsa | 20.2° ( |
aUsed reflections are better than IQ 5.