钙腔蛋白(CALU)重组蛋白(Human,人)
Recombinant Calumenin (CALU)
Crocalbin
[ PROPERTIES ]
Host: E.coli
Residues: Lys20~Phe315
Tags: Two N-terminal Tags, His-tag and T7-tag
Subcellular Location: Endoplasmic reticulum lumen. Secreted. Melanosome. Sarcoplasmic reticulum lumen.
Purity: >95%
Endotoxin Level: <1.0EU per 1μg (determined by the LAL method).
Formulation: Supplied as lyophilized form in 20mM Tris, 150mM NaCl, pH8.0, containing 1mM EDTA, 1mM DTT, 0.01% sarcosyl, 5% trehalose, and preservative.
Applications: SDS-PAGE; WB; ELISA; IP.
(May be suitable for use in other assays to be determined by the end user.)
Predicted isoelectric point: 4.7
Predicted Molecular Mass: 38.8kDa
Accurate Molecular Mass: 49kDa as determined by SDS-PAGE reducing conditions.
Phenomenon explanation:
The possible reasons that the actual band size differs from the predicted are as follows:
1.Splice variants: Alternative splicing may create different sized proteins from the same gene.
2. Relative charge: The composition of amino acids may affects the charge of the protein.
3. Post-translational modification: Phosphorylation, glycosylation, methylation etc.
4. Post-translation cleavage: Many proteins are synthesized as pro-proteins, and then cleavedto give the active form.
5. Polymerization of the target protein: Dimerization, multimerization etc.
[ USAGE ]
Reconstitute in sterile ddH?O.
[ STORAGE AND STABILITY ]
Storage:Avoid repeated freeze/thaw cycles.
Store at 2-8°C for one month.
Aliquot and store at -80°C for 12 months.
Stability Test: The thermal stability is described by the loss rate of the target protein. The loss rate was determined by accelerated thermal degradation test, that is, incubate the protein at 37oC for 48h, and no obvious degradation and precipitation were observed. (Referring from China Biological Products Standard, which was calculated by the Arrhenius equation.) The loss of this protein is less than 5% within the expiration date under appropriate storage condition.
[ SEQUENCES ]
The sequence of the target protein is listed below.
K PTEKKDRVHH EPQLSDKVHN DAQSFDYDHD AFLGAEEAKT FDQLTPEESK ERLGKIVSKI
DG DK DG F VT V DE LK DWIK FA QK RWIY E DV E RQWK G H D L NE DG LVSWE E YK
NATYGYVLDD PDPDDGFNYK QMMVRDERRF KMADKDGDLI ATKEEFTAFL HPEEYDYMKD
IVVQETMEDI DKNADGFIDL EEYIGDMYSH DGNTDEPEWV KTEREQFVEF RDKNRDGKMD
KEETKDWILP SDYDHAEAEA RHLVYESDQN KDGKLTKEEI VDKYDLFVGS QATDFGEALV
RHDEF
[ IDENTIFICATION ]

[ REFERENCES ]
1. Vorum H., et al. (1998) Biochim. Biophys. Acta 1386:121-131.
2. Yabe D., et al. (1998) Genomics 49:331-333.
3. Vorum H., et al. (1999) Exp. Cell Res. 248:473-481.
4. Tagliabracci V.S., et al. (2015) Cell 161:1619-1632.
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