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GFAP Products

Antibodies
ELISA Kits
Human GFAP DuoSet ELISA, 5 Pl ...
Human GFAP DuoSet ELISA, 5 Plate
DY2594-05
Species: Hu
Applications: ELISA
Porcine GFAP ELISA Kit (Color ...
Porcine GFAP ELISA Kit (Colorimetric)
NBP3-11816
Species: Po
Applications: ELISA
Human GFAP ELISA Kit (Colorim ...
Human GFAP ELISA Kit (Colorimetric)
NBP3-11815
Species: Hu
Applications: ELISA
Lysates
GFAP Overexpression Lysate
GFAP Overexpression Lysate
NBL1-11043
Species: Hu
Applications: WB
Proteins
Recombinant Human GFAP GST (N ...
Recombinant Human GFAP GST (N-Term...
H00002670-Q01
Species: Hu
Applications: WB, ELISA, MA, AP
GFAP Recombinant Protein Anti ...
GFAP Recombinant Protein Antigen
NBP2-33774PEP
Species: Hu
Applications: AC
GFAP Recombinant Protein Anti ...
GFAP Recombinant Protein Antigen
NBP2-54748PEP
Species: Hu
Applications: AC

Description

Glial fibrillary acidic protein (GFAP) is a class III intermediate filament protein that is largely expressed in astrocytes in addition to non-myelinating Schwann cells and glial cells (1,2). Other members of the type III intermediate filament family include desmin, peripherin, and vimentin (2-4). GFAP was first identified in the brains of multiple sclerosis patients (2). Human GFAP protein is 432 amino acids in length with a theoretical molecular weight of ~50 kDa (1,3). GFAP has at least 10 known isoforms, with the most prevalent and common in the brain being GFAP-alpha which is made of a head domain, a rod domain with four coils (1A, 1B, 2A, 2B) joined by linker regions, and a tail domain (1). GFAP is a marker of mature astrocytes, but is also expressed throughout development in both fetal and adult neural stem cells (2). While the exact function of GFAP is still elusive, it has been shown to play a role in cellular processes such as migration, mitosis, structural integrity, and signaling (2).

An increase in GFAP levels is often associated with neuroinflammation which results in the activation and proliferation of astroglia cell population (1,2). GFAP expression is also observed in brains of patients with neurodegenerative diseases including Alzheimer's and Parkinson's, epilepsy disorders, and brain injuries (1-4). Lesion sites associated with neurodegeneration can exhibit an array of gliosis characteristics from glial scarring with reduced astrocyte proliferation to activated, GFAP-positive astrocytes surrounding amyloid plaques (2). Furthermore, the GFAP gene is a target of single nucleotide polymorphisms in the coding region, considered a gain-of-function mutation, characterized by astrocytic inclusions, termed Rosenthal fibers, resulting in Alexander Disease (1-4). GFAP is also a center of many post-translational modifications, such as phosphorylation, which can alter various aspects of filament assembly (1,4).

References

1. Yang, Z., & Wang, K. K. (2015). Glial fibrillary acidic protein: from intermediate filament assembly and gliosis to neurobiomarker. Trends in Neurosciences. https://doi.org/10.1016/j.tins.2015.04.003

2. Hol, E. M., & Capetanaki, Y. (2017). Type III Intermediate Filaments Desmin, Glial Fibrillary Acidic Protein (GFAP), Vimentin, and Peripherin. Cold Spring Harbor Perspectives in Biology. https://doi.org/10.1101/cshperspect.a021642

3. Potokar, M., Morita, M., Wiche, G., & Jorgacevski, J. (2020). The Diversity of Intermediate Filaments in Astrocytes. Cells. https://doi.org/10.3390/cells9071604

4. Viedma-Poyatos, a., Pajares, M. A., & Perez-Sala, D. (2020). Type III intermediate filaments as targets and effectors of electrophiles and oxidants. Redox Biology. https://doi.org/10.1016/j.redox.2020.101582

Bioinformatics

Entrez Mouse
Rat
Human
Uniprot Human
Human
Human
Human
Human
Bovine
Product By Gene ID 2670
Alternate Names
  • ALXDRD
  • FLJ45472
  • GFAP astrocytes
  • GFAP
  • glial fibrillary acidic protein

Research Areas for GFAP

Find related products by research area and learn more about each of the different research areas below.

Astrocyte Markers
Cancer
Cellular Markers
Cytoskeleton Markers
Neuronal Stem Cell Markers
Neuroscience
Phospho-Specific
Stem Cell Markers

Related GFAP Blog Posts

Check out the latest blog posts on GFAP.
Glial Fibrillary Acidic Protein (GFAP), The Most Popular Astrocyte Marker
GFAP, a class-III intermediate filament, is a 50kDa protein which is found in the mature and developing astrocytes in the CNS, non-myelinating Schwann cells in the PNS, enteric glial cells (enteric nervous system/ENS), ependymal cells, and radial g...    Read more.
Synapsin I: Implicated in synaptic activity across a diverse range of studies
Synapsins are a family of neuronal proteins that are most renowned for their activity in modulating the pre-synaptic terminal.  Synapsin’s behavior is regulated by protein kinases and phosphatases, which alter the way that synapsin’s i...    Read more.
The identification of dopaminergic neurons using Tyrosine Hydroxylase in Parkinson's research and LRRK2
Tyrosine hydroxylase (TH) is a crucial enzyme involved in the biosynthesis of dopamine, norepinephrine and epinephrine in the brain.  Specifically, TH catalyzes the conversion of l-tyrosine to l-dihydroxyphenylalanine (l-dopa).  The importance of t...    Read more.
Beta Tubulin III and neurogenesis
Beta tubulin III, also known as Tuj-1, is a class III member of the beta tubulin protein family. Beta tubulins are one of two structural components that form our microtubule network. While general tubulins play a role in a wide range of cellular pr...    Read more.
GFAP Antibodies are a 'No Brainer' for Neurodegenerative Research
Glial fibrillary acidic protein (GFAP) is the main intermediate filament protein in mature astrocytes, but also an important component of the cytoskeleton in astrocytes during development. Recent developments using GFAP antibodies in astrocyte biology...    Read more.
"Whats the Hap" with GFAP?
Glial Fibrillary Acidic Protein (GFAP) is one of the major intermediate filament axonal proteins found in mature astrocytes, the star-shaped glial cells that comprise the majority of cells within the central nervous system (1). Astrocytes perform a wi...    Read more.
Vimentin in Wound Healing
Vimentin is a fundamental 10 nm type III intermediate filament (IF) protein found in many mesenchymal and epithelia tissues, tissue culture cells, and developing neuronal and astrocytic precursor cells of the central nervous system. It frequently co-p...    Read more.
GFAP: Roles in Alzheimer's and Schizophrenia
Glial fibrillary acidic protein (GFAP) is a class III intermediate filament (IF) protein and is used as a marker to distinguish astrocytes from other glial cells during development. GFP may play a role in maintaining mechanical strength and shape in a...    Read more.
Nestin: Investigating the Link Between New Brain Cells and Depression
Clinical depression (also known as major depressive disorder or MDD) affects many people, but the biological processes that cause it (and are influenced by its treatments) are not well understood. Adult neurogenesis is a newly emerging field that coul...    Read more.
Identifying tumoral and stromal transcriptomes that underlie tumor plasticity and stromal neuroinflammatory response in brain metastasis
By Jamshed Arslan, Pharm. D., PhD. Cancers in the brain often come from tumors elsewhere in the body. Several adaptive mechanisms influence brain metastasis, such as blood brain barrier leakage that can be induced by ...    Read more.
Deriving neural precursor cells from human induced pluripotent stem cells
By Jennifer Sokolowski, MD, PhD.Human induced pluripotent stem cells (iPSCs) can be used to create models of human organ systems and are useful for a) ascertaining the mechanisms underlying pathological conditions...    Read more.
Role of GFAP in astrocytes: Lessons from induced pluripotent stem cells in Alexander disease patients
By Michalina Hanzel, PhDAlexander disease is a progressive and fatal neurological disease with phenotypes ranging from myelination abnormalities, gait ataxia and megalencephaly to predisposition to seizures. It is an ...    Read more.
Astrocytes: Diversity in type and function
By Michalina Hanzel, PhDAstrocytes are a type of macroglia found in the central nervous system that regulate a vast array of essential brain functions, ranging from synaptogenesis, ion homeostasis and maintenance of t...    Read more.
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 more.
Read more GFAP related blogs.