Basic FGF (E5Y6M) Rabbit mAb (BSA and Azide Free) #83197
- WB
- IHC
- IF
Supporting Data
REACTIVITY | H M |
SENSITIVITY | Endogenous |
MW (kDa) | 18, 20, 22, 24 |
Source/Isotype | Rabbit IgG |
Application Key:
- WB-Western Blotting
- IHC-Immunohistochemistry
- IF-Immunofluorescence
Species Cross-Reactivity Key:
- H-Human
- M-Mouse
Product Information
Product Usage Information
This formulation is ideal for use with technologies requiring specialized or custom antibody labeling, including fluorophores, metals, lanthanides, and oligonucleotides. It is not recommended for ChIP, ChIP-seq, CUT&RUN or CUT&Tag assays. If you require a carrier free formulation for chromatin profiling, please contact us. Optimal dilutions/concentrations should be determined by the end user.
Formulation
Storage
Specificity / Sensitivity
Basic FGF (E5Y6M) Rabbit mAb (BSA and Azide Free) recognizes endogenous levels of total basic FGF protein. Species cross-reactivity for IF is human only.
Species Reactivity:
Human, Mouse
Source / Purification
Monoclonal antibody is produced by immunizing animals with a synthetic peptide corresponding to residues surrounding His24 of mouse basic FGF protein.
Background
Fibroblast growth factors are a family of broad-spectrum growth factors influencing a plethora of cellular activities. The interaction of at least 23 ligands, four receptors, and multiple coreceptors provides a dramatic complexity to a signaling system capable of effecting a multitude of responses (1,2). Basic fibroblast growth factor (bFGF or FGF2), initially identified as a mitogen with prominent angiogenic properties, is now recognized as a multifunctional growth factor (3). It is clear that bFGF produces its biological effects in target cells by signaling through cell-surface FGF receptors. bFGF binds to all four FGF receptors. Ligand binding induces receptor dimerization and autophosphorylation, allowing binding and activation of cytoplasmic downstream target proteins, including FRS-2, PLC, and Crk (4,5). The FGF signaling pathway appears to play a significant role not only in normal cell growth regulation but also in tumor development and progression (6).Acidic FGF (aFGF or FGF1) is another extensively investigated protein of the FGF family. aFGF shares 55% DNA sequence homology with bFGF. These two growth factors are ubiquitously expressed and exhibit a wide spectrum of similar biological activities with quantitative differences likely due to variations in receptor affinity or binding (7).
- Powers, C.J. et al. (2000) Endocrine-Related Cancer 7, 165-197.
- Bansal, R. (2002) Dev. Neurosci. 24, 35-46.
- Morrison, R.S. et al. (1994) J. Neurooncol. 18, 207-216.
- Kouhara, H. et al. (1997) Cell 89, 693-702.
- Mohammadi, M. et al. (1991) Mol. Cell. Biol. 11, 5068-5078.
- Bikfalvi, A. (1995) Eur. J. Cancer 31A, 1101-1104.
- Ledoux, D. et al. (1992) Prog. Growth Factor Res. 4, 107-120.
Limited Uses
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