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Crystal Structure of Mitochondrial Respiratory Membrane Protein Complex II:  Cell
Crystal Structure of Mitochondrial Respiratory Membrane Protein Complex II: Cell

Complex I mechanism | MRC Mitochondrial Biology Unit
Complex I mechanism | MRC Mitochondrial Biology Unit

PDB-101: Molecule of the Month: Complex I
PDB-101: Molecule of the Month: Complex I

PDB-101: Molecule of the Month: Complex I
PDB-101: Molecule of the Month: Complex I

Schematic overview of the functional complex I modules. In the N-module...  | Download Scientific Diagram
Schematic overview of the functional complex I modules. In the N-module... | Download Scientific Diagram

JCI - Mining yeast in silico unearths a golden nugget for mitochondrial  biology
JCI - Mining yeast in silico unearths a golden nugget for mitochondrial biology

Crystal structure of the entire respiratory complex I
Crystal structure of the entire respiratory complex I

How cardiolipin modulates the dynamics of respiratory complex I | Science  Advances
How cardiolipin modulates the dynamics of respiratory complex I | Science Advances

Mitochondrial complex I deficiency: MedlinePlus Genetics
Mitochondrial complex I deficiency: MedlinePlus Genetics

NADH:ubiquinone oxidoreductase
NADH:ubiquinone oxidoreductase

File:Complex I.svg - Wikimedia Commons
File:Complex I.svg - Wikimedia Commons

High-resolution structure and dynamics of mitochondrial complex I—Insights  into the proton pumping mechanism | Science Advances
High-resolution structure and dynamics of mitochondrial complex I—Insights into the proton pumping mechanism | Science Advances

Frontiers | The Mitochondrial Complex(I)ty of Cancer
Frontiers | The Mitochondrial Complex(I)ty of Cancer

Structure of bacterial respiratory complex I - ScienceDirect
Structure of bacterial respiratory complex I - ScienceDirect

Structure of the deactive state of mammalian respiratory complex I | bioRxiv
Structure of the deactive state of mammalian respiratory complex I | bioRxiv

Complex I: NADH-quinone oxidoreductase
Complex I: NADH-quinone oxidoreductase

Symmetry-related proton transfer pathways in respiratory complex I | PNAS
Symmetry-related proton transfer pathways in respiratory complex I | PNAS

Reverse Electron Transfer by Respiratory Complex I Catalyzed in a Modular  Proteoliposome System | Journal of the American Chemical Society
Reverse Electron Transfer by Respiratory Complex I Catalyzed in a Modular Proteoliposome System | Journal of the American Chemical Society

Structure of Escherichia coli respiratory complex I reconstituted into  lipid nanodiscs reveals an uncoupled conformation | eLife
Structure of Escherichia coli respiratory complex I reconstituted into lipid nanodiscs reveals an uncoupled conformation | eLife

Structure of bacterial respiratory complex I - ScienceDirect
Structure of bacterial respiratory complex I - ScienceDirect

NADH:ubiquinone oxidoreductase
NADH:ubiquinone oxidoreductase

Mitochondria function: the electron transport system
Mitochondria function: the electron transport system

Complex I deficiency: clinical features, biochemistry and molecular  genetics | Journal of Medical Genetics
Complex I deficiency: clinical features, biochemistry and molecular genetics | Journal of Medical Genetics

Key role of quinone in the mechanism of respiratory complex I | Nature  Communications
Key role of quinone in the mechanism of respiratory complex I | Nature Communications

Respiratory complex I - Wikipedia
Respiratory complex I - Wikipedia

overview of the structure of mouse complex I. The 14 core subunits... |  Download Scientific Diagram
overview of the structure of mouse complex I. The 14 core subunits... | Download Scientific Diagram

Mammalian Mitochondrial Complex I Structure and Disease-Causing Mutations:  Trends in Cell Biology
Mammalian Mitochondrial Complex I Structure and Disease-Causing Mutations: Trends in Cell Biology

Open questions: respiratory chain supercomplexes—why are they there and  what do they do? | BMC Biology | Full Text
Open questions: respiratory chain supercomplexes—why are they there and what do they do? | BMC Biology | Full Text