RecName: Full=NADH dehydrogenase [ubiquinone] 1 beta subcomplex subuni - Protein (original) (raw)
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RecName: Full=NADH dehydrogenase [ubiquinone] 1 beta subcomplex subunit 9; AltName: Full=Complex I-B22; Short=CI-B22; AltName: Full=LYR motif-containing protein 3; AltName: Full=NADH-ubiquinone oxidoreductase B22 subunit
UniProtKB/Swiss-Prot: Q9Y6M9.3
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Articles about the NDUFB9 gene
- Down-Regulation of NDUFB9 Promotes Breast Cancer Cell Proliferation, Metastasis by Mediating Mitochondrial Metabolism. [PLoS One. 2015]
Down-Regulation of NDUFB9 Promotes Breast Cancer Cell Proliferation, Metastasis by Mediating Mitochondrial Metabolism.
PLoS One. 2015; 10(12):e0144441. Epub 2015 Dec 7. - Mutation screening of 75 candidate genes in 152 complex I deficiency cases identifies pathogenic variants in 16 genes including NDUFB9. [J Med Genet. 2012]
Mutation screening of 75 candidate genes in 152 complex I deficiency cases identifies pathogenic variants in 16 genes including NDUFB9.
Haack TB, Madignier F, Herzer M, Lamantea E, Danhauser K, Invernizzi F, Koch J, Freitag M, Drost R, Hillier I, et al. J Med Genet. 2012 Feb; 49(2):83-9. Epub 2011 Dec 26. - Human NDUFB9 gene: genomic organization and a possible candidate gene associated with deafness disorder mapped to chromosome 8q13. [Hum Hered. 1999]
Human NDUFB9 gene: genomic organization and a possible candidate gene associated with deafness disorder mapped to chromosome 8q13.
Lin X, Wells DE, Kimberling WJ, Kumar S. Hum Hered. 1999 Mar; 49(2):75-80.
More about the NDUFB9 gene
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LinkOut to external resources
- Q9Y6M9 [Domain Mapping of Disease Mut...]
Q9Y6M9
Domain Mapping of Disease Mutations - Transcript/Protein Information [PANTHER Classification System]
Transcript/Protein Information
PANTHER Classification System - Reactome [Reactome]
Reactome - reagents [ExactAntigen/Labome]
reagents
ExactAntigen/Labome
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Finds sub-sequence or patterns in the sequence and highlights the matching region. The tool works with standard single letter nucleotide or protein codes including ambiguities and can match Prosite patterns in protein sequences.
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