Catalog: | C-FC-4085A |
Product Type: | FCM Antibody |
Size: | 25 Tests/100 Tests |
Concentration: | 10 μl/Test, 0.1 mg/ml |
Reactivity: | Human |
Specificity: | Human HSP70 |
Analysis mode: | FCM |
Host: | Rabbit |
Clonality: | Monoclonal |
Isotype: | IgG |
Alternate names: | heat shock 70kDa protein 1A |
Form: | Liquid |
Shipping: | This antibody is shipped as liquid solution at ambient temperature. Upon receipt, store it immediately at the temperature recommended below. |
Storage: | This antibody can be stored at 2℃-8℃ for twelve months without detectable loss of activity. Protected from prolonged exposure to light. Do not freeze ! Sodium azide is toxic to cells and should be disposed of properly. Flush with large volumes of water during disposal. |
Purification method: | Protein A |
Conjugation: | FITC |
Immunogen: | Recombinant Human HSP70/HSPA1A Protein |
Buffer: | Aqueous solution containing 0.5% BSA and 0.09% sodium azide |
HSPA1A is a member of the Hsp70 protein family. The 70 kilodalton heat shock proteins (Hsp70s) are a family of ubiquitously expressed heat shock proteins. HSP are abundant and conserved proteins present in all cells. Upon temperature shock or other stress stimuli, HSP is synthesized intracellularly, which may protect cells from protein denaturation or death. Extracellularly, HSP can serve a cytokine function to initiate both innate and adaptive immunity through activation of APC. HSP serves also a chaperone function and facilitates the presentation of antigen peptide to T cells. Molecular chaperones of the Hsp70 family have diverse functions in cells. They assist the folding of newly synthesized and stress-denatured proteins, as well as the import of proteins into organelles, and the dissociation of aggregated proteins. The well-conserved Hsp70 chaperones are ATP dependent: binding and hydrolysis of ATP regulate their interactions with unfolded polypeptide substrates, and ATPase cycling is necessary for their function. All cellular functions of Hsp70 chaperones use the same mechanism of ATP-driven polypeptide binding and release.
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