TXNRD1 (NM_182742) Human Tagged ORF Clone Lentiviral Particle

CAT#: RC217217L1V

  • LentiORF®

Lenti ORF particles, TXNRD1 (Myc-DDK-tagged)-Human thioredoxin reductase 1 (TXNRD1), transcript variant 2, (Note, selenocystein protein, internal stop codon, see summary), 200ul, >10^7 TU/mL

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USD 820.00

3 Weeks*

Size
    • 200 ul

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Specifications

Product Data
Type Human Tagged ORF Clone Lentiviral Particle
Tag Myc-DDK
Symbol TXNRD1
Synonyms GRIM-12; TR; TR1; TRXR1; TXNR
Vector pLenti-C-Myc-DDK
ACCN NM_182742
Sequence Data
The ORF insert of this clone is exactly the same as(RC217217).
OTI Disclaimer The molecular sequence of this clone aligns with the gene accession number as a point of reference only. However, individual transcript sequences of the same gene can differ through naturally occurring variations (e.g. polymorphisms), each with its own valid existence. This clone is substantially in agreement with the reference, but a complete review of all prevailing variants is recommended prior to use. More info The expression of this clone is not guaranteed due to the nature of selenoproteins.
OTI Annotation This clone encodes a selenoprotein containing the rare amino acid selenocysteine (Sec). Sec is encoded by UGA codon, which normally signals translational termination. Expression of this clone is not guaranteed due to the nature of selenoproteins.
Reference Data
RefSeq NM_182742.1, NP_877419.1
RefSeq Size 4096 bp
RefSeq ORF 1500 bp
Locus ID 7296
Cytogenetics 12q23.3
Protein Families Druggable Genome
Protein Pathways Pyrimidine metabolism
Gene Summary 'The protein encoded by this gene belongs to the pyridine nucleotide-disulfide oxidoreductase family, and is a member of the thioredoxin (Trx) system. Three thioredoxin reductase (TrxR) isozymes are found in mammals. TrxRs are selenocysteine-containing flavoenzymes, which reduce thioredoxins, as well as other substrates, and play a key role in redox homoeostasis. This gene encodes an ubiquitously expressed, cytosolic form of TrxR, which functions as a homodimer containing FAD, and selenocysteine (Sec) at the active site. Sec is encoded by UGA codon that normally signals translation termination. The 3' UTRs of selenoprotein mRNAs contain a conserved stem-loop structure, the Sec insertion sequence (SECIS) element, which is necessary for the recognition of UGA as a Sec codon rather than as a stop signal. Alternative splicing, primarily at the 5' end, results in transcript variants encoding same or different isoforms, including a glutaredoxin-containing isoform that is predominantly expressed in testis. [provided by RefSeq, May 2017]'

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