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28 results for “NADH”
Fig. 6. Maximum Likelihood tree produced with NADH dehydrogenase subunit 2 in Morphological and Molecular Evidence Reveals the Longnose Skate (Marini, 1933) to be a Senior Synonym of Concha, Caira, Ebert & Pompert 2019.
Fig. 6. Maximum Likelihood tree produced with NADH dehydrogenase subunit 2 (NADH2) sequences of Dipturus argentinensis, D. lamillai, Zearaja brevicaudata, Z. chilensis, Z. nasuta and D. olseni as outgroup. Dipturus lamillai sequences are marked in bold and sequences corresponding to the description of the species (Concha et al. 2019) are indicated with *.
Partial NADH dehydrogenase subunit 2 (ND2) gene sequences for Trochilidae hummingbirds
Open the record for dataset details and reuse information.
Decarboxylative Alkyl Coupling Promoted by NADH and Blue Light
<p>Supporting information raw data for the publication with the same title.</p> <p>NMR, HPLC and HRMS characterization data.</p>
Source Data for the publication "Sub-100-fs energy transfer in coenzyme NADH is a coherent process assisted by a charge-transfer state"
<p>Molecular Structures for solvated NADH. </p> <p>The folder "QMMM_OPTIMIZED_STRUCTS" contains the pdb files of the six representatives for the three conformational clusters obtained after REMD used in the Supplementary Information.</p> <p>The folder "SOLVENT_ENSEMBLE_AROUND_FIXED_SOLUTE" conatins AMBER RESTART files for 200 solvent configurations around two cluster reps displayed in Figure 2 of main manuscript. </p> <p>The folder "PARAMETERS_FOR_MLMCTDH" contains the input file, operator file and parameters for ML-MCTDH dynamics for the structures shown in Main Manuscript and Supplementary. </p>
1. A natural fusion between a flavodiiron protein, rubredoxin and NADH:rubredoxin oxidoreductase is responsible for the H2O-forming oxidase activity in Trichomonas vaginalis
<p>Homology models fit to a 6.8Å cryo-EM map of <em>T. vaginalis</em> FDPF3.</p>
Figure 9 in Taxonomic assessment of sharks, rays and guitarfishes (Chondrichthyes: Elasmobranchii) from south-eastern Arabia, using the NADH dehydrogenase subunit 2 (NADH2) gene
Figure 9. Neighbour-joining tree for an 829-bp fragment of the NADH2 gene for rhinobatid elasmobranchs from southeastern Arabia together with related taxa from Naylor et al. (2012). Bootstrap values are based on 1000 replications and only values ≥ 95 % are shown.
Figure 5 in Taxonomic assessment of sharks, rays and guitarfishes (Chondrichthyes: Elasmobranchii) from south-eastern Arabia, using the NADH dehydrogenase subunit 2 (NADH2) gene
Figure 5. Himantura sp. from Fujairah in the United Arab Emirates. This species clusters separately from all other ray species from the region.
Figure 4 in Taxonomic assessment of sharks, rays and guitarfishes (Chondrichthyes: Elasmobranchii) from south-eastern Arabia, using the NADH dehydrogenase subunit 2 (NADH2) gene
Figure 4. Neighbour-joining tree for an 829-bp fragment of the NADH2 gene for dasyatid rays from southeastern Arabia together with related taxa from Naylor et al. (2012). Bootstrap values are based on 1000 replications and only values ≥ 95 % are shown.
Figure 3 in Taxonomic assessment of sharks, rays and guitarfishes (Chondrichthyes: Elasmobranchii) from south-eastern Arabia, using the NADH dehydrogenase subunit 2 (NADH2) gene
Figure 3. Specimens of Carcharhinus plumbeus (top) and Carcharhinus altimus (bottom) from south-eastern Arabia. Despite the fact that these species display a high level of genetic similarity, they are morphologically distinguishable from each other.
Figure 2 in Taxonomic assessment of sharks, rays and guitarfishes (Chondrichthyes: Elasmobranchii) from south-eastern Arabia, using the NADH dehydrogenase subunit 2 (NADH2) gene
Figure 2. Neighbour-joining tree for an 829-bp fragment of the NADH2 gene from 1487 elasmobranch specimens from south-eastern Arabia. Values in parentheses indicate sample size (n) and within-group mean genetic distance (D). Bootstrap values are based on 1000 replications and only values ≥ 95% are shown.
Figure 7 in Taxonomic assessment of sharks, rays and guitarfishes (Chondrichthyes: Elasmobranchii) from south-eastern Arabia, using the NADH dehydrogenase subunit 2 (NADH2) gene
Figure 7. Specimens of Mobula eregoodootenkee (top) and Mobula kuhlii (bottom) from Oman. Despite their genetic similarity, these species are morphologically distinguishable.
Figure 8 in Taxonomic assessment of sharks, rays and guitarfishes (Chondrichthyes: Elasmobranchii) from south-eastern Arabia, using the NADH dehydrogenase subunit 2 (NADH2) gene
Figure 8. Rhinobatos sp. (top) is morphologically and genetically distinct from Rhinobatos punctifer (middle). The bottom image shows Acroteriobatus sp.
Figure 11 in Taxonomic assessment of sharks, rays and guitarfishes (Chondrichthyes: Elasmobranchii) from south-eastern Arabia, using the NADH dehydrogenase subunit 2 (NADH2) gene
Figure 11. Species commonly identified as Rhynchobatus djiddensis from south-eastern Arabia display morphological and colour variations. The specimen in the top image possesses an obviously narrower and longer rostrum. The results of the present study suggest there are at least two local lineages within this genus.
Figure 10 in Taxonomic assessment of sharks, rays and guitarfishes (Chondrichthyes: Elasmobranchii) from south-eastern Arabia, using the NADH dehydrogenase subunit 2 (NADH2) gene
Figure 10. Neighbour-joining tree for an 829-bp fragment of the NADH2 gene for Rhynchobatus spp. from southeastern Arabia and from Naylor et al. (2012). Bootstrap values are based on 1000 replications and only values ≥ 95% are shown.
Figure 6 in Taxonomic assessment of sharks, rays and guitarfishes (Chondrichthyes: Elasmobranchii) from south-eastern Arabia, using the NADH dehydrogenase subunit 2 (NADH2) gene
Figure 6. Neighbour-joining tree for an 829-bp fragment of the NADH2 gene for Echinorhinus sp. from the present study together with Echinorhinus brucus and Echinorhinus cookei (Naylor et al., 2012). Bootstrap values are based on 1000 replications and only values ≥ 95% are shown.
Experimental insights into electrocatalytic [Cp*Rh(bpy)Cl]+ mediated NADH regeneration DATA
<p>Data from the Paper.</p> <p>EIS Data are measurements and fits (_sim)</p>
Coenzyme Q10 Plus NADH Supplementation in Chronic Fatigue Syndrome/Myalgic Encephalomyelitis
ClinicalTrials.gov study NCT03186027. IPD Sharing: NO. Countries: 1. Publications: 6.
NADH Inhibition of SIRT1 Links Energy State to Transcription During Time-Restricted Feeding
GEO Series GSE151281. Mus musculus. 87 samples. Type: Expression profiling by high throughput sequencing; Genome binding/occupancy profiling by high throughput sequencing.
Dual effect: High NADH levels contribute to efflux-mediated antibiotic resistance but drive ROS lethality
GEO Series GSE188801. Pseudomonas aeruginosa. 8 samples. Type: Expression profiling by high throughput sequencing.
Figure 3. Maximum likelihood phylogeny showing the relationships among Indo-Burmese Cyrtodactylus species using mitochondrial NADH dehydrogenase subunit 2 in Morphological and molecular phylogenetic data reveal another new species of bent-toed gecko (Cyrtodactylus Gray: Squamata: Gekkonidae) from Mizoram, India
Figure 3. Maximum likelihood phylogeny showing the relationships among Indo-Burmese Cyrtodactylus species using mitochondrial NADH dehydrogenase subunit 2 gene. Numbers at each node are bootstrap support values. Preceding each species name is the NCBI accession number.
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