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36 matches
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protein
1)
Saccharomyces cerevisiae
NDE1 - Mitochondrial external NADH dehydrogenase; type II NAD(P)H:quinone oxidoreductase that catalyzes the oxidation of cytosolic NADH; Nde1p and Nde2p provide cytosolic NADH to the mitochondrial respiratory chain; NDE1 has a paralog, NDE2, that arose from the whole genome duplication.
[a.k.a. YMR145C, 1.6.5.9, sce:YMR145C,
NDH1
]
2)
Actinoplanes sp. N902109
ndh1
- FAD-dependent pyridine nucleotide-disulfide oxidoreductase.
3)
Actinoplanes sp. SE50110
ndh1
- NADH dehydrogenase, FAD-containing subunit.
4)
Azoarcus sp. BH72
ndh1
- Probable NADH dehydrogenase. Homology to ndh of P. fluorescens of 48% (trembl|Q9KGX0). TRANSFER OF ELECTRONS FROM NADH TO THE RESPIRATORY CHAIN. THE IMMEDIATE ELECTRON ACCEPTOR FOR THE ENZYME IS BELIEVED TO BE UBIQUINONE. DOES NOT COUPLE THE REDOX REACTION TO PROTON TRANSLOCATION. Interpro: FAD-dependent pyridine nucleotide-dislphide oxidoreductase (IPR001327) Pfam: Pyridine nucleotide-disluphide oxidoreductase no signal peptide no TMHs; Family membership.
5)
Dothistroma septosporum
ndh1
- Formate dehydrogenase; Catalyzes the NAD(+)-dependent oxidation of formate to carbon dioxide. Formate oxidation is the final step in the methanol oxidation pathway in methylotrophic microorganisms. Has a role in the detoxification of exogenous formate in non-methylotrophic organisms. Belongs to the D-isomer specific 2-hydroxyacid dehydrogenase family. FDH subfamily.
6)
Halobacterium hubeiense
ndh1
- Probable NADH dehydrogenase.
7)
Haloferax volcanii
ndh1
- Putative NADH dehydrogenase.
8)
Haloquadratum walsbyi DSM 16790
ndh1
- Probable NADH dehydrogenase.
9)
Komagataeibacter europaeus
ndh1
- NADH dehydrogenase.
10)
Lactobacillus plantarum
ndh1
- NADH dehydrogenase.
11)
Mycobacterium marinum
ndh1
- NADH dehydrogenase
Ndh1
; Transfer of electrons from NADH to the respiratory chain. the immediate electron acceptor for the enzyme is believed to be ubiquinone. does not couple the redox reaction to proton translocation.
12)
Natrialba magadii
ndh1
- Putative NADH dehydrogenase; PFAM: FAD-dependent pyridine nucleotide-disulphide oxidoreductase; KEGG: hsl:OE2307F putative NADH dehydrogenase.
13)
Paenibacillus polymyxa
ndh1
- CoA-disulfide reductase; Derived by automated computational analysis using gene prediction method: Protein Homology.
14)
Pseudomonas sp. UW4
ndh1
- [C] COG1252 NADH dehydrogenase, FAD-containing subunit.
15)
Salvia splendens
ndh1
- NADH:ubiquinone reductase (Non-electrogenic).
16)
Sorangium cellulosum So ce56
ndh1
- NADH dehydrogenase; High confidence in function and specificity.
17)
Streptomyces avermitilis
Ndh1
- NADH dehydrogenase; Derived by automated computational analysis using gene prediction method: Protein Homology.
18)
Gossypium hirsutum
ndhA - NAD(P)H-quinone oxidoreductase subunit 1, chloroplastic; NDH shuttles electrons from NAD(P)H:plastoquinone, via FMN and iron-sulfur (Fe-S) centers, to quinones in the photosynthetic chain and possibly in a chloroplast respiratory chain. The immediate electron acceptor for the enzyme in this species is believed to be plastoquinone. Couples the redox reaction to proton translocation, and thus conserves the redox energy in a proton gradient.
[a.k.a. 107931894, NAD(P)H dehydrogenase subunit 1, GopuCp071,
ndh1
]
19)
Nicotiana sylvestris
ndhA - NAD(P)H-quinone oxidoreductase subunit 1, chloroplastic; NDH shuttles electrons from NAD(P)H:plastoquinone, via FMN and iron-sulfur (Fe-S) centers, to quinones in the photosynthetic chain and possibly in a chloroplast respiratory chain. The immediate electron acceptor for the enzyme in this species is believed to be plastoquinone. Couples the redox reaction to proton translocation, and thus conserves the redox energy in a proton gradient.
[a.k.a. NADH dehydrogenase subunit 1, NAD(P)H dehydrogenase subunit 1, EC 7.1.1.2,
ndh1
]
20)
Nicotiana tabacum
ndhA - NADH-quinone oxidoreductase subunit H; NDH-1 shuttles electrons from NADH, via FMN and iron-sulfur (Fe-S) centers, to quinones in the respiratory chain. The immediate electron acceptor for the enzyme in this species is believed to be ubiquinone. Couples the redox reaction to proton translocation (for every two electrons transferred, four hydrogen ions are translocated across the cytoplasmic membrane), and thus conserves the redox energy in a proton gradient. This subunit may bind ubiquinone.
[a.k.a. NADH dehydrogenase subunit 1, nuoH, NP_054562.1,
ndh1
]
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