PARN Mouse Monoclonal Antibody [Clone ID: OTI2D9]

CAT#: CF802721

Carrier-free (BSA/glycerol-free) PARN mouse monoclonal antibody,clone OTI2D9

Formulation: Standard Carrier Free


  View other "OTI2D9" antibodies (2)

USD 465.00

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Size
    • 100 ug

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Specifications

Product Data
Clone Name OTI2D9
Applications IHC, WB
Recommended Dilution WB 1:2000
Reactivities Human, Mouse, Rat
Host Mouse
Isotype IgG2b
Clonality Monoclonal
Immunogen Human recombinant protein fragment corresponding to amino acids 1-266 of human PARN (NP_002573) produced in E.coli.
Formulation Lyophilized powder (original buffer 1X PBS, pH 7.3, 8% trehalose)
Reconstitution Method For reconstitution, we recommend adding 100uL distilled water to a final antibody concentration of about 1 mg/mL. To use this carrier-free antibody for conjugation experiment, we strongly recommend performing another round of desalting process. (OriGene recommends Zeba Spin Desalting Columns, 7KMWCO from Thermo Scientific)
Purification Purified from mouse ascites fluids or tissue culture supernatant by affinity chromatography (protein A/G)
Conjugation Unconjugated
Storage Store at -20°C as received.
Stability Stable for 12 months from date of receipt.
Predicted Protein Size 73.3 kDa
Gene Name Homo sapiens poly(A)-specific ribonuclease (PARN), transcript variant 1, mRNA.
Background The protein encoded by this gene is a 3'-exoribonuclease, with similarity to the RNase D family of 3'-exonucleases. It prefers poly(A) as the substrate, hence, efficiently degrades poly(A) tails of mRNAs. Exonucleolytic degradation of the poly(A) tail is often the first step in the decay of eukaryotic mRNAs. This protein is also involved in silencing of certain maternal mRNAs during oocyte maturation and early embryonic development, as well as in nonsense-mediated decay (NMD) of mRNAs that contain premature stop codons. Alternatively spliced transcript variants encoding different isoforms have been found for this gene. [provided by RefSeq, Aug 2008]
Synonyms DAN
Reference Data
Protein Families Transcription Factors
Protein Pathways RNA degradation

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