Tet1 Mouse siRNA Oligo Duplex (Locus ID 52463)
CAT#: SR423353
Tet1 (Mouse) - 3 unique 27mer siRNA duplexes - 2 nmol each
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CNY 4,090.00
货期*
4周
规格
Cited in 2 publications. |
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经常一起买 (3)
Specifications
Product Data | |
Purity | HPLC purified |
Quality Control | Tested by ESI-MS |
Sequences | Available with shipment |
Stability | One year from date of shipment when stored at -20°C. |
# of transfections | Approximately 330 transfections/2nmol in 24-well plate under optimized conditions (final conc. 10 nM). |
Note | Single siRNA duplex (10nmol) can be ordered. |
Reference Data | |
RefSeq | NM_001253857, NM_027384 |
Synonyms | 2510010B09Rik; AA517754; BB001228; Cxxc6; D10Ertd17e; LCX; mKIAA1676 |
Components | Tet1 (Mouse) - 3 unique 27mer siRNA duplexes - 2 nmol each (Locus ID 52463)Included - SR30004, Trilencer-27 Universal Scrambled Negative Control siRNA Duplex - 2 nmolIncluded - SR30005, RNAse free siRNA Duplex Resuspension Buffer - 2 ml |
Summary | Dioxygenase that catalyzes the conversion of the modified genomic base 5-methylcytosine (5mC) into 5-hydroxymethylcytosine (5hmC) and plays a key role in active DNA demethylation. Also mediates subsequent conversion of 5hmC into 5-formylcytosine (5fC), and conversion of 5fC to 5-carboxylcytosine (5caC). Conversion of 5mC into 5hmC, 5fC and 5caC probably constitutes the first step in cytosine demethylation. Methylation at the C5 position of cytosine bases is an epigenetic modification of the mammalian genome which plays an important role in transcriptional regulation. In addition to its role in DNA demethylation, plays a more general role in chromatin regulation. Preferentially binds to CpG-rich sequences at promoters of both transcriptionally active and Polycomb-repressed genes. Involved in the recruitment of the O-GlcNAc transferase OGT to CpG-rich transcription start sites of active genes, thereby promoting histone H2B GlcNAcylation by OGT. Also involved in transcription repression of a subset of genes through recruitment of transcriptional repressors to promoters. Involved in the balance between pluripotency and lineage commitment of cells it plays a role in embryonic stem cells maintenance and inner cell mass cell specification. Plays an essential role in the tumorigenicity of glioblastoma cells. TET1-mediated production of 5hmC acts as a recruitment signal for the CHTOP-methylosome complex to selective sites on the chromosome, where it methylates H4R3 and activates the transcription of genes involved in glioblastomagenesis (PubMed:25284789).[UniProtKB/Swiss-Prot Function] |
Performance Guranteed | OriGene guarantees that at least two of the three Dicer-Substrate duplexes in the kit will provide at least 70% or more knockdown of the target mRNA when used at 10 nM concentration by quantitative RT-PCR when the TYE-563 fluorescent transfection control duplex (cat# SR30002) indicates that >90% of the cells have been transfected and the HPRT positive control (cat# SR30003) provides 90% knockdown efficiency. For non-conforming siRNA, requests for replacement product must be made within ninety (90) days from the date of delivery of the siRNA kit. To arrange for a free replacement with newly designed duplexes, please contact Technical Services at techsupport@origene.com. Please provide your data indicating the transfection efficiency and measurement of gene expression knockdown compared to the scrambled siRNA control (quantitative RT-PCR data required). |
Citations (2)
The use of this RNAi has been cited in the following citations: |
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Placental superoxide dismutase 3 mediates benefits of maternal exercise on offspring health
,Kusuyama, J;Alves-Wagner, AB;Conlin, RH;Makarewicz, NS;Albertson, BG;Prince, NB;Kobayashi, S;Kozuka, C;M?ller, M;Bjerre, M;Fuglsang, J;Miele, E;Middelbeek, RJW;Xiudong, Y;Xia, Y;Garneau, L;Bhattacharjee, J;Aguer, C;Patti, ME;Hirshman, MF;Jessen, N;Hatta, T;Ovesen, PG;Adamo, KB;Nozik-Grayck, E;Goodyear, LJ;,
Cell metabolism
,PubMed ID 33770509
[Tet1]
|
Cytosine modifications modulate the chromatin architecture of transcriptional enhancers
,Mahé, EA;Madigou, T;Sérandour, AA;Bizot, M;Avner, S;Chalmel, F;Palierne, G;Métivier, R;Salbert, G;,
Genome Res.2017
,PubMed ID 28396520
[Tet1]
|
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