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GFP-SNAP25

Anti-GFP-SNAP25 Recombinant Antibody Products
- Recombinant Anti-GFP-SNAP25 Antibody (MOB-392)
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- Derivation: Mouse
- Type: IgG
- Application: ELISA, WB, FC, FuncS
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- Derivation: Human
- Type: IgG
- Application: IP, IF, Biosensors, FuncS
- Recombinant Human Anti-GFP-SNAP25 Antibody Fab Fragment (MHH-392-F(E))
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- Derivation: Human
- Type: Fab
- Application: ELISA, WB, FC, FuncS
- Recombinant Human Anti-GFP-SNAP25 Antibody scFv Fragment (MHH-392-S(P))
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- Derivation: Human
- Type: scFv
- Application: ELISA, WB, FuncS
- Recombinant Anti-GFP-SNAP25 Antibody Fab Fragment (MOB-392-F(E))
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- Derivation: Mouse
- Type: Fab
- Application: IF, FACS, FuncS
- Recombinant Anti-GFP-SNAP25 Antibody scFv Fragment (MOB-392-S(P))
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- Derivation: Mouse
- Type: scFv
- Application: ELISA, WB, IF, FuncS
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For Research Use Only. Not For Clinical Use.
The green fluorescent protein (GFP) is a protein composed of 238 amino acid residues (26.9 kDa) that exhibits bright green fluorescence when exposed to light in the blue to ultraviolet range. Although many other marine organisms have similar green fluorescent proteins, GFP traditionally refers to the protein first isolated from the jellyfish Aequorea victoria. The GFP from A. victoria has a major excitation peak at a wavelength of 395 nm and a minor one at 475 nm. Its emission peak is at 509 nm, which is in the lower green portion of the visible spectrum. The fluorescence quantum yield (QY) of GFP is 0.79. The GFP from the sea pansy (Renilla reniformis) has a single major excitation peak at 498 nm.
Synaptosomal-associated protein 25 (SNAP-25) is a t-SNARE protein that is encoded by the SNAP25 gene in humans. SNAP-25 is a component of the trans-SNARE complex, which is proposed to account for the specificity of membrane fusion and to directly execute fusion by forming a tight complex that brings the synaptic vesicle and plasma membranes together.
Synaptosomal-associated protein 25 (SNAP-25) is a t-SNARE protein that is encoded by the SNAP25 gene in humans. SNAP-25 is a component of the trans-SNARE complex, which is proposed to account for the specificity of membrane fusion and to directly execute fusion by forming a tight complex that brings the synaptic vesicle and plasma membranes together.