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  2. Polyclonal

GTX106626

alpha SNAP antibody [N2C3]

Eine Lieferung in diese Region ist nicht möglich.

SKU:
GTX106626
Zusätzliche Namen:
NSF attachment protein alpha , SNAPA
Anwendung:
WB, IHC-P, IF, ICC, IP
Konzentration:
1 mg/ml
Physischer Zustand:
Liquid
Spezies-Reaktivität:
Human
Aufreinigung:
Affinity Purified
Lagerbedingungen:
-20[o]C Aliquot. Avoid freeze/thaw cycles. Store undiluted., 2-8[o]C Aliquot. Avoid freeze/thaw cycles. Store undiluted., -20[o]C/-70[o]C Aliquot. Avoid freeze/thaw cycles. Store undiluted.
Hersteller:
Genetex
Host:
Rabbit
Reaktivitäten:
Human, Mouse, Rat
Buffer:
0.1M Tris, 0.1M Glycine, 10% Glycerol, 0.01% Thimerosal.
Immunogen:
Recombinant protein encompassing a sequence within the center region of human alpha SNAP. The exact sequence is proprietary.
Klon:
N2C3
Uniprot:
P54920
Synonyme:
alpha-SNAP;alpha-soluble NSF attachment protein;N-ethylmaleimide-sensitive factor attachment protein alpha;N-ethylmaleimide-sensitive factor attachment protein, alpha;SNAPA
Weitere Details:
The 'SNARE hypothesis' is a model explaining the process of docking and fusion of vesicles to their target membranes. According to this model, membrane proteins from the vesicle (v-SNAREs) and proteins from the target membrane (t-SNAREs) govern the specificity of vesicle targeting and docking through mutual recognition. Once the 2 classes of SNAREs bind to each other, they form a complex that recruits the general elements of the fusion apparatus, namely NSF (N-ethylmaleimide-sensitive factor) and SNAPs (soluble NSF-attachment proteins), to the site of membrane fusion, thereby forming the 20S fusion complex. Alpha- and gamma-SNAP are found in a wide range of tissues and act synergistically in intra-Golgi transport. The sequence of the predicted 295-amino acid human protein encoded by NAPA shares 37%, 60%, and 67% identity with the sequences of yeast, Drosophila, and squid alpha-SNAP, respectively. Platelets contain some of the same proteins, including NSF, p115/TAP, alpha-SNAP, gamma-SNAP, and the t-SNAREs syntaxin-2 and syntaxin-4, that are used in many vesicular transport processes in other cell types. Platelet exocytosis uses a molecular mechanism similar to that used by other secretory cells, such as neurons, although the proteins used by the platelet and their modes of regulation may be quite different. [provided by RefSeq]
Versandbedingungen:
Blue Ice