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Calreticulin Protein (CALR) (AA 19-401) (His tag)

CALR Origin: Euglena gracilis Host: Yeast Recombinant > 90 % ELISA
Catalog No. ABIN1615817
  • Target See all Calreticulin (CALR) Proteins
    Calreticulin (CALR)
    Protein Type
    Recombinant
    Protein Characteristics
    AA 19-401
    Origin
    • 11
    • 5
    • 3
    • 1
    • 1
    • 1
    • 1
    • 1
    • 1
    • 1
    • 1
    • 1
    • 1
    • 1
    • 1
    Euglena gracilis
    Source
    • 13
    • 11
    • 3
    • 3
    • 1
    Yeast
    Purification tag / Conjugate
    This Calreticulin protein is labelled with His tag.
    Application
    ELISA
    Sequence
    TI YYKETFEPDW ETRWTHSTAK SDYGKFKLTS GKFYGDKAKD AGIQTSQDAK FYAISSPIAS SFSNEGKDLV LQFSVKHEQD IDCGGGYLKL LPSVDAAKFT GDTPYHIMFG PDICGATKKI HFILTYKGKN LLWKKEPRCE TDTLSHTYTA VIKADRTYEV LVDQVKKESG TLEEDWEILK PKTIPDPEDK KPADWVDEPD MVDPEDKKPE DWDKEPAQIP DPDATQPDDW DEEEDGKWEA PMISNPKYKG EWKAKKIPNP AYKGVWKPRD IPNPEYEADD KVHIFDEIAA VGFDLWQVKS GTIFDNIIVT DSLAEAKAFY DQTNGATKDA EKKAFDSAEA DKRKKEEDER KKQEEEEKKT AEEDEDDDDE EEEEDDKKDE L
    Specificity
    Euglena gracilis
    Characteristics
    Please inquire if you are interested in this recombinant protein expressed in E. coli, mammalien cells or by baculovirus infection. Be aware about differences in price and lead time.
    Purity
    > 90 %
    Top Product
    Discover our top product CALR Protein
  • Comment

    The yeast protein expression system is the most economical and efficient eukaryotic system for secretion and intracellular expression. A protein expressed by the mammalian cell system is of very high-quality and close to the natural protein. But the low expression level, the high cost of medium and the culture conditions restrict the promotion of mammalian cell expression systems. The yeast protein expression system serve as a eukaryotic system integrate the advantages of the mammalian cell expression system. A protein expressed by yeast system could be modificated such as glycosylation, acylation, phosphorylation and so on to ensure the native protein conformation. It can be used to produce protein material with high added value that is very close to the natural protein. Our proteins produced by yeast expression system has been used as raw materials for downstream preparation of monoclonal antibodies.

    Restrictions
    For Research Use only
  • Format
    Lyophilized
    Concentration
    0.2-2 mg/mL
    Buffer
    Tris-based buffer, 50 % glycerol
    Handling Advice
    Repeated freezing and thawing is not recommended. Store working aliquots at 4 °C for up to one week
    Storage
    -20 °C
    Storage Comment
    Store at -20 °C, for extended storage, conserve at -20 °C or -80 °C.
  • Target
    Calreticulin (CALR)
    Alternative Name
    Calreticulin (CALR Products)
    Synonyms
    CRT Protein, RO Protein, SSA Protein, cC1qR Protein, crc Protein, crt Protein, Calregulin Protein, CG9429 Protein, Clr Protein, Dmel\\CG9429 Protein, anon-EST:Liang-2.11 Protein, anon-EST:Liang-2.17 Protein, anon-EST:fe3D7 Protein, clone 2.11 Protein, clone 2.17 Protein, eth Protein, potp Protein, cc1qr Protein, ssa Protein, NV19007 Protein, CRP55 Protein, ERp60 Protein, HACBP Protein, CHOT1 Protein, CHT1 Protein, CT1 Protein, AA589632 Protein, CRTR Protein, Creat Protein, CCDS1 Protein, calrl2 Protein, fc66d10 Protein, wu:fc66d10 Protein, wu:fj50c03 Protein, zgc:66153 Protein, calreticulin Protein, calreticulin L homeolog Protein, Calreticulin Protein, putative calreticulin Protein, solute carrier family 6 member 8 Protein, solute carrier family 6 (neurotransmitter transporter, creatine), member 8 Protein, CALR Protein, calr.L Protein, Crt Protein, crt Protein, CRT Protein, Calr Protein, calr Protein, LMJF_31_2600 Protein, Crc Protein, Slc6a8 Protein, SLC6A8 Protein, LOC8269812 Protein
    Background
    Recommended name: Calreticulin
    UniProt
    Q9ZNY3
    Pathways
    Retinoic Acid Receptor Signaling Pathway, Intracellular Steroid Hormone Receptor Signaling Pathway, Regulation of Intracellular Steroid Hormone Receptor Signaling, Nuclear Hormone Receptor Binding, ER-Nucleus Signaling, Unfolded Protein Response
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