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GFP Antibody (4B10B2) [DyLight 350]

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Product Details

Summary
Reactivity All-NASpecies Glossary
Applications WB, ELISA, Flow, ICC/IF, IHC
Clone
4B10B2
Clonality
Monoclonal
Host
Mouse
Conjugate
DyLight 350

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GFP Antibody (4B10B2) [DyLight 350] Summary

Immunogen
This GFP antibody was developed against purified recombinant fragment of GFP expressed in E. coli.
Isotype
IgG2a
Clonality
Monoclonal
Host
Mouse
Purity
Ammonium sulfate precipitation
Innovator's Reward
Test in a species/application not listed above to receive a full credit towards a future purchase.

Applications/Dilutions

Dilutions
  • ELISA
  • Flow Cytometry
  • Immunocytochemistry/ Immunofluorescence
  • Immunohistochemistry
  • Immunohistochemistry-Paraffin
  • Western Blot
Application Notes
Optimal dilution of this antibody should be experimentally determined.

Reactivity Notes

Reacts with GFP.

Packaging, Storage & Formulations

Storage
Store at 4C in the dark.
Buffer
50mM Sodium Borate
Preservative
0.05% Sodium Azide
Purity
Ammonium sulfate precipitation

Notes



DyLight (R) is a trademark of Thermo Fisher Scientific Inc. and its subsidiaries.

Alternate Names for GFP Antibody (4B10B2) [DyLight 350]

  • eGFP
  • Enhanced Green Fluorescent Protein
  • GFP
  • GFPuv
  • green fluorescent protein (gfp)
  • Green Fluorescent Protein

Background

Green fluorescent protein (GFP) is a 27 kDa protein derived from the bioluminescent jellyfish Aquorea Victoria. GFP can be excited by light in the blue to ultraviolet spectrum and has an excitation peak at 395 nm with an emission peak at 509 nm in the green spectrum. GFP autocatalytically forms a fluorescent pigment from natural amino acids present in the nascent protein. GFP is widely used as a reporter (tag) for gene expression, enabling researchers to visualize and localize GFP-tagged proteins within living cells without the need for chemical staining. GFP fluorescence is stable under fixation conditions and antibodies are suitable for a variety of applications including ELISA, ICC/IF, IHC, IP and WB (1-3).

References
1. Shi, C., Pan, F. C., Kim, J. N., Washington, M. K., Padmanabhan, C., Meyer, C. T., . . . Means, A. L. (2019). Differential Cell Susceptibilities to Kras(G12D) in the Setting of Obstructive Chronic Pancreatitis. Cell Mol Gastroenterol Hepatol. doi:10.1016/j.jcmgh.2019.07.001

2. Zhao, S., Fortier, T. M., & Baehrecke, E. H. (2018). Autophagy Promotes Tumor-like Stem Cell Niche Occupancy. Curr Biol, 28(19), 3056-3064.e3053. doi:10.1016/j.cub.2018.07.075

3. Zusso, M., Lunardi, V., Franceschini, D., Pagetta, A., Lo, R., Stifani, S., . . . Moro, S. (2019). Ciprofloxacin and levofloxacin attenuate microglia inflammatory response via TLR4/NF-kB pathway. J Neuroinflammation, 16(1), 148. doi:10.1186/s12974-019-1538-9

Limitations

This product is for research use only and is not approved for use in humans or in clinical diagnosis. Primary Antibodies are guaranteed for 1 year from date of receipt.

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Product General Protocols

Find general support by application which include: protocols, troubleshooting, illustrated assays, videos and webinars.

Video Protocols

WB Video Protocol
ICC/IF Video Protocol

FAQs for GFP Antibody (NBP2-22111UV). (Showing 1 - of FAQ).

    Secondary Antibodies

     

    Isotype Controls

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    Array NBP2-22111UV

    Research Areas for GFP Antibody (NBP2-22111UV)

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    Blogs on GFP. Showing 1-10 of 13 blog posts - Show all blog posts.

    Successful Transplantation of Friedreich Ataxia Induced Pluripotent Stem Cell (iPSC)-Derived Sensory Neurons in Dorsal Root Ganglia of Adult Rodents
    Jamshed Arslan, Pharm D, PhD The dorsal root ganglia (DRG) are a collection of cell bodies of sensory nerves carrying sensory information – including nociception, mechanoreception and proprioception – from periphera...  Read full blog post.

    Autophagy and RAS signaling: Clinical implications
    By Christina Towers, PhD The cellular recycling process known as autophagy is currently being targeted in over 60 clinical trials focused on treating different types of cancer1. To date, the only autophagy-targeted ...  Read full blog post.

    Neurovascular signaling for repair enhances brain metastasis
    By Jamshed Arslan, Pharm. D., PhD. Stroke    is a leading cause of mortality and morbidity worldwide. Cellular players – neurons, astrocytes, endothelial and stromal cells – involved in post-stroke repair t...  Read full blog post.


      Read full blog post.

    How to visualize autophagy by microscopy
    By Christina Towers, PhD Autophagy is a recycling process that relies on the formation of a unique organelle termed an autophagosome. An elegant way to monitor autophagy is through various microscopy techniques to...  Read full blog post.

    Toll-like receptors in the intestinal epithelial cells
    By Jamshed Arslan, Pharm. D., PhD. Toll-like receptors (TLRs) are microbe-sensing proteins that act as first responders to danger signals. TLRs help the intestinal epithelial cells (IECs) recognize commensal bacteria ...  Read full blog post.


      Read full blog post.

    Animal Models to Study Autophagy
    By Christina Towers, PhD What is autophagy?Autophagy is the catabolic process that degrades cytoplasmic material via the lysosome. The process of macroautophagy was originally characterized in yeast, where the...  Read full blog post.

    The use of a GFP antibody for research applications in transgenic C. elegans, GFP tagged yeast and porcine model
    GFP, or green fluorescent protein, is a chemiluminescent protein derived from Aequorea jellyfish that was first discovered by Osamu Shimomura.  It was soon after established that the emission spectra of GFP was right around 509nm, or the ultraviol...  Read full blog post.

    GFP - Be Green!
    Green fluorescence protein (GFP) is a 27KD protein derived from the jellyfish Aquorea victoria that emits a green light (emission peak at a wavelength of 509 nm) when excited by blue light (excitation peak at a wavelength of 395 nm). GFP is a highly v...  Read full blog post.

    Showing 1-10 of 13 blog posts - Show all blog posts.
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