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GFP Antikörper

(Green Fluorescent Protein (GFP))

Green fluorescent protein (GFP) antibodies play a crucial role in various research areas, including cell biology, molecular biology, developmental biology, immunology, and neuroscience, providing valuable tools for visualizing and studying protein localization, expression, interactions, and dynamics. GFP is a naturally occurring fluorescent protein derived from the jellyfish Aequorea victoria, and it emits green light when exposed to blue or ultraviolet light. Antibodies specific to GFP can recognize and bind to the GFP protein, enabling researchers to visualize and study GFP-tagged proteins or cells in various experimental settings. Common use cases for GFP antibodies in research include:

  • GFP antibodies are widely used to detect fusion proteins via Western blotting. A fusion protein is created by genetically fusing the GFP gene to a gene of interest, resulting in the production of a chimeric protein that contains both the GFP portion and the protein of interest. The GFP moiety acts as a tag, allowing researchers to track and visualize the fusion protein within cells or tissues. The resulting signal on the Western blot indicates the presence and size of the fusion protein. Secondary antibodies conjugated to an enzyme, such as horseradish peroxidase (HRP) can be used to amplify the signal.
    This approach allows researchers to study the expression and detection of fusion proteins. Blotting is commonly used in molecular biology and cell biology research to confirm the successful production of fusion proteins, assess their expression levels, and investigate their interactions and localization within cells.
    Suitable for WB and ELISA experiments: anti-GFP Antibody
  • Protein expression analysis: GFP antibodies can be employed to analyze protein expression levels in cells or tissues. Researchers can use immunoblotting techniques, such as Western blotting, to detect and quantify GFP-tagged proteins by specifically binding to the GFP portion. This helps in assessing protein expression levels and monitoring changes under different experimental conditions.
  • Protein localization: GFP fusion proteins are commonly used to track the localization of proteins within cells. By introducing a GFP-tagged protein into cells and using GFP antibodies, researchers can visualize and determine the subcellular localization of the protein of interest. This allows for the study of protein dynamics and cellular processes.
  • Flow cytometry and cell sorting: Flow cytometry allows for the analysis and sorting of cells based on their fluorescent properties. GFP antibodies are employed to detect and quantify GFP-expressing cells in heterogeneous populations. This enables researchers to isolate and characterize specific cell populations based on GFP expression, facilitating the study of cell types, differentiation, or disease states.
  • Immunofluorescence and microscopy: GFP antibodies are utilized in immunofluorescence experiments to visualize and localize GFP-tagged proteins within fixed cells or tissues. By using secondary antibodies conjugated to fluorophores, such as Alexa Fluor or DyLight dyes, the GFP antibodies can be detected and visualized under a fluorescence microscope. This technique enables researchers to study protein localization, interactions, and dynamics in real-time.
    Suitable for FACS and IF experiments: Recombinant anti-GFP Single-Domain Antibody
  • Co-localization studies: GFP antibodies are essential tools for studying protein-protein interactions and co-localization within cells. By using multiple antibodies, including GFP antibodies, against different target proteins, researchers can perform co-immunoprecipitation or immunofluorescence experiments to investigate the spatial relationships and potential interactions between the GFP-tagged protein and other proteins of interest.

antibodies-online offers a wide range of GFP antibodies. Have a look at our top GFP antibodies or discover GFP antibodies tailored to your experimental needs down below!

227 Treffer

GFP Reaktivität: Aequorea victoria FACS Wirt: Ratte Monoclonal FM264G unconjugated
Produktnummer ABIN2664995
 
GFP Reaktivität: Aequorea victoria WB, ELISA, IHC, IP, IF, FM Wirt: Ziege Polyclonal unconjugated
Produktnummer ABIN7565879
 
GFP Reaktivität: Aequorea victoria WB, ELISA, IHC, IP, FM, FACS Wirt: Kaninchen Polyclonal unconjugated
Produktnummer ABIN7565767
 
GFP Reaktivität: Aequorea victoria WB, IP, IF Wirt: Maus unconjugated
Produktnummer ABIN1112985
 
GFP Reaktivität: Qualle WB, ELISA, IHC, IP, ICC, ChIP Wirt: Maus Monoclonal N86-8 unconjugated
Produktnummer ABIN7595930
 
GFP Reaktivität: Aequorea victoria FM Wirt: Maus Monoclonal r9F9-F9 CF®488A Recombinant Antibody
Produktnummer ABIN7654700
 
GFP Reaktivität: Aequorea victoria FM Wirt: Maus Monoclonal r9F9-F9 CF®405S Recombinant Antibody
Produktnummer ABIN7654699
 
GFP Reaktivität: Aequorea victoria FM Wirt: Maus Monoclonal r9F9-F9 CF®640R Recombinant Antibody
Produktnummer ABIN7654704
 
GFP Reaktivität: Aequorea victoria FM Wirt: Maus Monoclonal r9F9-F9 CF®633 Recombinant Antibody
Produktnummer ABIN7654703
 
GFP Reaktivität: Aequorea victoria FM Wirt: Maus Monoclonal r9F9-F9 CF®568 Recombinant Antibody
Produktnummer ABIN7654701
 
GFP Reaktivität: Aequorea victoria FM Wirt: Maus Monoclonal r9F9-F9 CF®594 Recombinant Antibody
Produktnummer ABIN7654702
 
GFP Reaktivität: Aequorea victoria FM Wirt: Maus Monoclonal r9F9-F9 CF®647 Recombinant Antibody
Produktnummer ABIN7654705
 
GFP Reaktivität: Aequorea victoria FM Wirt: Maus Monoclonal r9F9-F9 Biotin Recombinant Antibody
Produktnummer ABIN7654711
 
GFP Reaktivität: Aequorea victoria WB, IP, ICC Wirt: Kaninchen Polyclonal unconjugated
Produktnummer ABIN3200185
 
GFP Reaktivität: Aequorea victoria Wirt: Maus Monoclonal CF®568
Produktnummer ABIN6199014
 
GFP Reaktivität: Aequorea victoria FM Wirt: Maus Monoclonal r9F9-F9 CF®660R Recombinant Antibody
Produktnummer ABIN7654706
 
GFP Reaktivität: Aequorea victoria FM Wirt: Maus Monoclonal r9F9-F9 CF®680R Recombinant Antibody
Produktnummer ABIN7654708
 
GFP Reaktivität: Aequorea victoria FM Wirt: Maus Monoclonal r9F9-F9 CF®680 Recombinant Antibody
Produktnummer ABIN7654707
 
GFP Reaktivität: Aequorea victoria FM Wirt: Maus Monoclonal r9F9-F9 CF®740 Recombinant Antibody
Produktnummer ABIN7654709
 
GFP Reaktivität: Aequorea victoria FM Wirt: Maus Monoclonal r9F9-F9 CF®770 Recombinant Antibody
Produktnummer ABIN7654710
 
  • Typ Primary
    • Primary
  • Anwendung
    • Western Blotting (WB)
    • ELISA
    • Immunohistochemistry (IHC)
    • Immunofluorescence (IF)
    • Immunocytochemistry (ICC)
    • Fluorescence Microscopy (FM)
    • Immunoprecipitation (IP)
    • Flow Cytometry (FACS)
    • FLISA
    • Dot Blot (DB)
    • Immunofluorescence (Cultured Cells) (IF (cc))
    • Immunofluorescence (Paraffin-embedded Sections) (IF (p))
    • Immunohistochemistry (Frozen Sections) (IHC (fro))
    • Immunohistochemistry (Paraffin-embedded Sections) (IHC (p))
    • Enzyme Immunoassay (EIA)
    • Immunochromatography (IC)
    • Chromatin Immunoprecipitation (ChIP)
    • ChIP DNA-Sequencing (ChIP-seq)
    • Immunoelectron Microscopy (IEM)
    • Immunostaining (ISt)
    • Multiplex Assay (MA)
    • Multiplex Immunofluorescence (mIF)
    • DNA Microscopy (DNA Mic)
  • Reaktivität
    • Aequorea victoria
    • Aequorea coerulescens (Belt Jellyfish)
    • Aequorea aequorea
    • Jellyfish
    • Tag
    • Various Species
    • Human
    • Mouse
    • Rat
  • In Publikationen zitiert
  • Abbildungen verfügbar
  • Nur ohne Konservierungsmittel
  • Carrier free only
  • Wirt
    • Mouse
    • Rabbit
    • Goat
    • Chicken
    • Alpaca
    • Guinea Pig
    • Sheep
    • Rat
    • Carp
  • Klonalität
    • Polyclonal
    • Monoclonal
  • Klon
    • 9F9-F9
    • r9F9-F9
    • 1H1
    • N86-8
    • 168AT1211
    • 4B10B2
    • N86-38
    • 1H1-1B2
    • FM264G
    • GF28R
    • AT2G5
    • C11
    • G10
    • H3
    • 1002
    • 1003
    • 101G4
    • 14C4
    • 17G06
    • 1A5
    • 1E4
    • 215
    • 2Q2156
    • 5H6
    • 5H7
    • 6C11C11
    • CD-7
    • CE-7
    • CF-7
    • DG-7
    • IQGFP5
    • N86-20
    • N86-44
    • R04-6A1
  • Bindungsspezifität
    • AA 1-238
    • AA 25-120
    • AA 190-220
    • N-Term
    • full length
    • AA 151-238
    • C-Term
    • AA 2-238
    • AA 101-117
    • AA 102-118
    • AA 183-191
    • AA 204-217
    • AA 26-39
    • AA 70-83
    • AA 98-112
  • Konjugat
    • Unkonjugiert
    • Biotin
    • FITC
    • HRP
    • Texas Red (TR)
    • Alexa Fluor 647
    • Alkaline Phosphatase (AP)
    • APC
    • DyLight 405
    • DyLight 488
    • AZDye 568
    • AbBy Fluor® 350
    • AbBy Fluor® 488
    • AbBy Fluor® 555
    • AbBy Fluor® 594
    • AbBy Fluor® 647
    • Alexa Fluor 488
    • Atto 488
    • CF®488A
    • CF®568
    • CF®594
    • CF®633
    • CF®640R
    • CF®660R
    • CF®680
    • CF®680R
    • CF®770
    • Cy3
    • Cy5
    • Cy5.5
    • Cy7
    • DyLight 549
    • DyLight 649
    • DyLight 680
    • DyLight 800
    • FL490
    • FL550
    • FL594
    • FL650
    • TRITC
    • AbBy Fluor® 680
    • AbBy Fluor® 750
    • Alexa Fluor 555
    • Alexa Fluor 594
    • Alexa Fluor 680
    • Alexa Fluor 750
    • CF®405S
    • CF®647
    • CF®740
    • CypHer5E
    • DBCO
  • Isotyp
    • IgG
    • IgG1
    • IgG1 kappa
    • IgG2a
    • kappa
    • IgY
    • IgG2a kappa
    • IgG2b
    • Ig Fraction
    • IgG2b kappa
    • IgM
  • Protein-Typ
    • Recombinant Antibody
  • Format
    • Liquid
    • Lyophilized
  • Fragment
    • single-domain Antibody (sdAb)
  • Hersteller
    • antibodies-online
    • Rockland
    • Biotium
    • USBio
    • Antibodies Incorporated
    • Acris
    • Boster Bio
    • Signalway
    • Biomatik
    • Abbexa
    • ProSci
    • BioLegend
    • Synaptic Systems
    • Covalab
    • RayBiotech
    • BioAcademia
    • Biospes
    • Enogene Biotech
    • Epitope Biotech
    • FabGennix
    • NSJ Bioreagents

Aktuelle Publikationen für unsere GFP Antikörper

Frolova, Palchevska, Dominguez, Frolov: "Alphavirus-induced transcriptional and translational shutoffs play major roles in blocking the formation of stress granules." in: Journal of virology, Vol. 97, Issue 11, pp. e0097923, (2023) (PubMed).

Dominguez, Palchevska, Frolova, Frolov: "Alphavirus-based replicons demonstrate different interactions with host cells and can be optimized to increase protein expression." in: Journal of virology, Vol. 97, Issue 11, pp. e0122523, (2023) (PubMed).

Park, Kim, Alabdalla, Mishra, Mchaourab: "Generation and characterization of a zebrafish knockout model of abcb4, a homolog of the human multidrug efflux transporter P-glycoprotein." in: Human genomics, Vol. 17, Issue 1, pp. 84, (2023) (PubMed).

Frolov, Agback, Palchevska, Dominguez, Lomzov, Agback, Frolova: "All Domains of SARS-CoV-2 nsp1 Determine Translational Shutoff and Cytotoxicity of the Protein." in: Journal of virology, Vol. 97, Issue 3, pp. e0186522, (2023) (PubMed).

Lapraz, Boutres, Fixary-Schuster, De Queiroz, Plaçais, Cerezo, Besse, Préat, Noselli: "Asymmetric activity of NetrinB controls laterality of the Drosophila brain." in: Nature communications, Vol. 14, Issue 1, pp. 1052, (2023) (PubMed).

Annunziata, Rasa, Krepelova, Lu, Minetti, Omrani, Nunna, Adam, Käppel, Neri: "Paneth cells drive intestinal stem cell competition and clonality in aging and calorie restriction." in: European journal of cell biology, Vol. 101, Issue 4, pp. 151282, (2022) (PubMed).

Kim, Leng, Park, Sorets, Kim, Shostak, Embalabala, Mlouk, Katdare, Rose, Sturgeon, Neal, Ao, Wang, Sofroniew, Brunger, McMahon, Schrag, Kampmann, Lippmann: "Reactive astrocytes transduce inflammation in a blood-brain barrier model through a TNF-STAT3 signaling axis and secretion of alpha 1-antichymotrypsin." in: Nature communications, Vol. 13, Issue 1, pp. 6581, (2022) (PubMed).

Paterson, Lämmermann: "Macrophage network dynamics depend on haptokinesis for optimal local surveillance." in: eLife, Vol. 11, (2022) (PubMed).

Kim, Jiang: "Generation of human pluripotent stem cell-derived fused organoids with oligodendroglia and myelin." in: STAR protocols, Vol. 2, Issue 2, pp. 100443, (2022) (PubMed).

Bhargava, Williart, Maurin, Davidson, Jouve, Piel, Lahaye, Manel: "Inhibition of HIV infection by structural proteins of the inner nuclear membrane is associated with reduced chromatin dynamics." in: Cell reports, Vol. 36, Issue 13, pp. 109763, (2022) (PubMed).

Aliase für GFP Antikörper

green fluorescent protein (gfp) Antikörper
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