Macromolecular organization of ATP synthase and complex I in whole mitochondria

被引:374
作者
Davies, Karen M. [1 ]
Strauss, Mike [1 ]
Daum, Bertram [1 ]
Kief, Jan H. [2 ,3 ]
Osiewacz, Heinz D. [4 ]
Rycovska, Adriana [5 ]
Zickermann, Volker [6 ]
Kuehlbrandt, Werner [1 ]
机构
[1] Max Planck Inst Biophys, Dept Biol Struct, D-60438 Frankfurt, Germany
[2] Goethe Univ Frankfurt Main, Sch Med, D-60590 Frankfurt, Germany
[3] Frankfurt Inst Mol Life Sci, D-60438 Frankfurt, Germany
[4] Deutsch Forsch Gemeinschaft Cluster Excellence Fr, D-60438 Frankfurt, Germany
[5] Max Planck Inst Biophys, Dept Mol Membrane Biol, D-60438 Frankfurt, Germany
[6] Goethe Univ Frankfurt, Fac Med, D-60590 Frankfurt, Germany
关键词
cryoelectron tomography; subtomogram averaging; membrane curvature; membrane potential; mitochondrial ultrastructure; BOVINE HEART-MITOCHONDRIA; NADH-UBIQUINONE OXIDOREDUCTASE; OXIDATIVE-PHOSPHORYLATION; RESPIRATORY SUPERCOMPLEXES; CRYOELECTRON TOMOGRAPHY; FUNCTIONAL IMPLICATIONS; YARROWIA-LIPOLYTICA; SUBUNIT COMPOSITION; PODOSPORA-ANSERINA; F1FO-ATP SYNTHASE;
D O I
10.1073/pnas.1103621108
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
We used electron cryotomography to study the molecular arrangement of large respiratory chain complexes in mitochondria from bovine heart, potato, and three types of fungi. Long rows of ATP synthase dimers were observed in intact mitochondria and cristae membrane fragments of all species that were examined. The dimer rows were found exclusively on tightly curved cristae edges. The distance between dimers along the rows varied, but within the dimer the distance between F1 heads was constant. The angle between monomers in the dimer was 70 degrees or above. Complex I appeared as L-shaped densities in tomograms of reconstituted proteoliposomes. Similar densities were observed in flat membrane regions of mitochondrial membranes from all species except Saccharomyces cerevisiae and identified as complex I by quantum-dot labeling. The arrangement of respiratory chain proton pumps on flat cristae membranes and ATP synthase dimer rows along cristae edges was conserved in all species investigated. We propose that the supramolecular organization of respiratory chain complexes as proton sources and ATP synthase rows as proton sinks in the mitochondrial cristae ensures optimal conditions for efficient ATP synthesis.
引用
收藏
页码:14121 / 14126
页数:6
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