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Hsp70 Monoclonal FITC Antibody (Clone C92)

Hsp70 Monoclonal FITC Antibody (Clone C92)

Cat no: 10011422


Supplier: Cayman Chemical Company
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Antigen: human Hsp70{15501} . Host: mouse, clone C92F3A-5 . Cross Reactivity: (+) human, mouse, rat, bovine, canine, chicken, Drosophila, fish (carp), guinea pig, hamster, monkey, porcine, rabbit, and ovine Hsp70 . Application: Flow cytometry
Catalogue number: 10011422
Hosts: Mouse
Weight: 70
Form: 200 microg
Antigen: human Hsp70{15501}
P type: Antibodies|Heat Shock Protein
Purity: >98%
Shipping temp: -20
Storage temp: -20
Additional info: Hsp70 genes encode abundant heat-inducible 70 kDa Hsps (Hsp70). In most eukaryotes Hsp70 genes exist as part of a multigene family. They are found in most cellular compartments of eukaryotes including nuclei, mitochondria, chloroplasts, the endoplasmic reticulum, and the cytosol, as well as in bacteria. The genes show a high degree of conservation, having at least 50% identity. The N-terminal two thirds of Hsp70s are more conserved than the C-terminal third. Hsp70 binds ATP with high affinity and possesses a weak ATPase activity which can be stimulated by binding to unfolded proteins and synthetic peptides. When Hsc70 (constitutively expressed) present in mammalian cells was truncated, ATP binding activity was found to reside in an N-terminal fragment of 44 kDa which lacked peptide binding capacity. Polypeptide binding ability therefore resided within the C-terminal half. The structure of this ATP binding domain displays multiple features of nucle binding proteins. All Hsp70s, regardless of location, bind proteins, particularly unfolded ones. The molecular chaperones of the Hsp70 family recognize and bind to nascent polypeptide chains as well as partially folded intermediates of proteins preventing their aggregation and misfolding. The binding of ATP triggers a bound substrate protein. The universal ability of Hsp70s to undergo cycles of binding to and release from hydrophobic stretches of partially unfolded proteins determines their role in a great variety of vital intracellular functions such as protein synthesis, protein folding, oligomerization, and protein transport.

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