scholarly article | Q13442814 |
P356 | DOI | 10.1074/JBC.M313180200 |
P698 | PubMed publication ID | 15004020 |
P50 | author | Ulrich Brandt | Q43274407 |
P2093 | author name string | Klaus Zwicker | |
Stefan Kerscher | |||
Ljuban Grgic | |||
Noushin Kashani-Poor | |||
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Functional implications from an unexpected position of the 49-kDa subunit of NADH:ubiquinone oxidoreductase | Q44445876 | ||
Two aspartic acid residues in the PSST-homologous NUKM subunit of complex I from Yarrowia lipolytica are essential for catalytic activity | Q44557676 | ||
Iron-sulfur cluster N2 of the Escherichia coli NADH:ubiquinone oxidoreductase (complex I) is located on subunit NuoB. | Q44585471 | ||
Gas access to the active site of Ni-Fe hydrogenases probed by X-ray crystallography and molecular dynamics | Q51540019 | ||
Biophysical and structural characterization of proton-translocating NADH-dehydrogenase (complex I) from the strictly aerobic yeast Yarrowia lipolytica | Q58782686 | ||
A pure S = 3/2 [Fe4S4]+ cluster in the A33Y variant of Pyrococcus furiosus ferredoxin | Q78020352 | ||
P433 | issue | 20 | |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 21193-21199 | |
P577 | publication date | 2004-03-05 | |
P1433 | published in | Journal of Biological Chemistry | Q867727 |
P1476 | title | Functional significance of conserved histidines and arginines in the 49-kDa subunit of mitochondrial complex I. | |
P478 | volume | 279 |
Q40883076 | A scaffold of accessory subunits links the peripheral arm and the distal proton-pumping module of mitochondrial complex I |
Q35590231 | Accessory NUMM (NDUFS6) subunit harbors a Zn-binding site and is essential for biogenesis of mitochondrial complex I. |
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Q41644093 | Conserved amino acid residues of the NuoD segment important for structure and function of Escherichia coli NDH-1 (complex I). |
Q42605334 | Differential effects of mitochondrial Complex I inhibitors on production of reactive oxygen species |
Q28079059 | Energy conversion, redox catalysis and generation of reactive oxygen species by respiratory complex I |
Q103001312 | Essential role of accessory subunit LYRM6 in the mechanism of mitochondrial complex I |
Q58782194 | Exploring the Ubiquinone Binding Cavity of Respiratory Complex I |
Q62551811 | Far- and Mid-Infrared Spectroscopic Analysis of the Substrate-Induced Structural Dynamics of Respiratory Complex I |
Q33227897 | Functional sulfurtransferase is associated with mitochondrial complex I from Yarrowia lipolytica, but is not required for assembly of its iron-sulfur clusters |
Q37184201 | Generation of reactive oxygen species by mitochondrial complex I: implications in neurodegeneration |
Q37924658 | Mammalian NADH:ubiquinone oxidoreductase (Complex I) and nicotinamide nucleotide transhydrogenase (Nnt) together regulate the mitochondrial production of H2O2—Implications for their role in disease, especially cancer |
Q38092859 | Mitochondrial Complex I |
Q41532581 | Pivotal roles of three conserved carboxyl residues of the NuoC (30k) segment in the structural integrity of proton-translocating NADH-quinone oxidoreductase from Escherichia coli |
Q36079117 | Redox-induced activation of the proton pump in the respiratory complex I. |
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Q47748420 | Terminal Electron-Proton Transfer Dynamics in the Quinone Reduction of Respiratory Complex I. |
Q37701980 | The LYR protein subunit NB4M/NDUFA6 of mitochondrial complex I anchors an acyl carrier protein and is essential for catalytic activity |
Q58782339 | The Redox-Bohr Group Associated with Iron-Sulfur Cluster N2 of Complex I |
Q34258358 | The coupling mechanism of respiratory complex I — A structural and evolutionary perspective |
Q33633116 | The reaction of NADPH with bovine mitochondrial NADH:ubiquinone oxidoreductase revisited: II. Comparison of the proposed working hypothesis with literature data |
Q34020648 | Towards the molecular mechanism of respiratory complex I. |
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