Salt Inducible Kinase 2 (SIK2) Recombinant, Human

Artikelnummer: USB-156720
Artikelname: Salt Inducible Kinase 2 (SIK2) Recombinant, Human
Artikelnummer: USB-156720
Hersteller Artikelnummer: 156720
Alternativnummer: USB-156720-10,USB-156720-50,USB-156720-200
Hersteller: US Biological
Kategorie: Molekularbiologie
Source: Recombinant Human from E. coli Accession No: Q9H0K1 Fragment: Gln655~Val925 (Accession No: Q9H0K1) Sequence: MGSSHHHHHH SSGLVPRGSH MASMTGGQQM GRGSEF-QESVST LPASVHPQLS PRQSLETQYL QHRLQKPSLL SKAQNTCQLY CKEPPRSLEQ QLQEHRLQQK RLFLQKQSQL QAYFNQMQIA ESSYPQPSQQ LPLPRQETPP PSQQAPPFSL TQPLSPVLEP SSEQMQYSPF LSQYQEMQLQ PLPSTSGPRA APPLPTQLQQ QQPPPPPPPP PPRQPGAAPA PLQFSYQTCE LPSAASPAPD YPTPCQYPVD GAQQSDLTGP DCPRSPGLQE APSSYDPLAL SELPGLFDCE MLDAVDPQHN GYVLV Epitope Tag: N-terminal Tags: His-tag and T7-tag Molecular Weight: 33.8kD Applications: Suitable for use in ELISA, Western Blot and SDS-PAGE. Other applications not tested. Recommended Dilution: Optimal dilutions to be determined by the researcher. Storage and Stability: Lyophilized and reconstituted products are stable for 6 months after receipt at -70C. Reconstitute with sterile 20mM Tris, 150mM sodium chloride, pH 8.0.. Aliquot to avoid repeated freezing and thawing. Store at -70C. For maximum recovery of product, centrifuge the original vial after thawing and prior to removing the cap. Further dilutions can be made in assay buffer. Note: Thermal stability is described by the loss rate of the target protein. The loss rate was determined by accelerated thermal degradation by incubating the protein at 37C for 48h, with no obvious degradation or precipitation observed. Protein loss is <5% within the expiration date under appropriate storage conditions.
Molekulargewicht: 33.8
UniProt: Q9H0K1
Reinheit: 95%
Formulierung: Supplied as lyophilized powder from 20mM Tris, 150mM sodium chloride, pH 8.0, 1mM EDTA, 1mM DTT, 5% trehalose, 0.01% sarcosyl, 0.05% Proclin-300. Reconstitute with sterile 20mM Tris, 150mM sodium chloride, pH 8.0 to a concentration of 0.1-1mg/ml. Do not v