CCL28
Recombinant ID:
1656
Request Datasheet
Gene of Interest
Gene Synonyms:
Protein Names:
Accession Data
Organism:
Homo sapiens (Human)
Mass (kDa):
14280
Length (aa):
127
Sequence:
MQQRGLAIVALAVCAALHASEAILPIASSCCTEVSHHISRRLLERVNMCRIQRADGDCDLAAVILHVKRRRICVSPHNHTVKQWMKVQAAKKNGKGNVCHRKKHHGKRNSNRAHQGKHETYGHKTPY
Proteomics (Proteome ID):
C-C motif chemokine 28 (Mucosae-associated epithelial chemokine) (MEC) (Protein CCK1) (Small-inducible cytokine A28)
Proteomics (Chromosome):
UP000005640
Mass Spectrometry:
N/A
Function [CC]:
Chemotactic activity for resting CD4, CD8 T-cells and eosinophils. Binds to CCR3 and CCR10 and induces calcium mobilization in a dose-dependent manner.
Metal Binding:
N/A
Site:
N/A
Tissue Specificity:
Preferentially expressed by epithelial cells of diverse tissues including normal and pathological colon, salivary gland, mammary gland, trachea and rectum. Also found in prostate, spleen, thyroid, psoriasis skin and in lower levels in peripheral blood leukocytes, small intestine, Peyer patches, stomach and normal skin.
Disease:
N/A
Mutagenesis:
N/A
Reagent Data
Name:
C-C motif chemokine 28 (Mucosae-associated epithelial chemokine) (MEC) (Protein CCK1) (Small-inducible cytokine A28)
Class:
Subcategory:
Recombinant
Molecular Weight:
Source:
Species:
Human
Amino Acid Sequence:
Tag:
Format:
Lyophilized
Formulation:
Inquire
Formulation Concentration:
Inquire
Buffer Volume:
Standard
Buffer Solution:
PBS
pH:
7.4-7.5
Stabilizers
NaCl:
Null
Metal Chelating Agents
EDTA:
Null
Purity:
> 97%
Determined:
SDS-PAGE
Stained:
Migration Assay
Validated:
Inquire
Sample Handling
Storage:
-20°C
Stability:
This bioreagent is stable at 4°C (short-term) and -70°C(long-term). After reconstitution, sample may be stored at 4°C for 2-7 days and below -18°C for future use.
Preparation:
Reconstitute in sterile distilled H2O to no less than 100ug/ml; dilute reconstituted stock further in other aqueous solutions if needed. Please review COA for lot-specific instructions. Final measurements should be determined by the end-user for optimal performance.