Recombinant Human AGAP3 protein, His-tagged
Cat.No. : | AGAP3-2744H |
Product Overview : | Recombinant Human AGAP3 protein(474-556 aa), fused with N-terminal His tag, was expressed in E. coli. |
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Source : | E. coli |
Species : | Human |
Tag : | N-His |
Protein length : | 474-556 aa |
Form : | The purified protein was Lyophilized from sterile PBS (58mM Na2HPO4,17mM NaH2PO4, 68mM NaCl, pH7.4). 5 % trehalose and 5 % mannitol are added as protectant before lyophilization. |
AASequence : | LAIGPCKSLPNSPSHSAVSAASIPA VHINQATNGGGSAFSDYSSSVPSTP SISQRELRIETIAASSTPTPIRKQS KRRSNIFT |
Purity : | 95%, by SDS-PAGE with Coomassie Brilliant Blue staining. |
Storage : | Short-term storage: Store at 2-8°C for (1-2 weeks). Long-term storage: Aliquot and store at -20°C to -80°C for up to 3 months, reconstitution with sterile water and addition of an equal volume of glycerol. Avoid repeat freeze-thaw cycles. |
Reconstitution : | Reconstitute at 0.25 μg/μl in 200 μl sterile water for short-term storage. After reconstitution with sterile water, if glycerol has no effect on subsequent experiments, it is recommended to add an equal volume of glycerol for long-term storage. |
Gene Name : | AGAP3 ArfGAP with GTPase domain, ankyrin repeat and PH domain 3 [ Homo sapiens ] |
Official Symbol : | AGAP3 |
Synonyms : | AGAP3; ArfGAP with GTPase domain, ankyrin repeat and PH domain 3; centaurin, gamma 3 , CENTG3; arf-GAP with GTPase, ANK repeat and PH domain-containing protein 3; centaurin-gamma-3; centaurin, gamma 3; CRAM-associated GTPase; MR1-interacting protein; CRMP (collapsin response mediator protein) associated; CRAG; AGAP-3; CENTG3; MRIP-1; cnt-g3; FLJ16146; FLJ34452; |
Gene ID : | 116988 |
mRNA Refseq : | NM_001042535 |
Protein Refseq : | NP_001036000 |
UniProt ID : | Q96P47 |
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Customer Reviews (5)
Write a reviewThe product’s high purity facilitated precise quantification, minimizing variability in our data.
Agap3's absence of contaminants contributed to data accuracy.
The product’s innovative characteristics allowed us to delve into previously unexplored cellular mechanisms.
The consistent effects of Agap3 streamlined our research process.
It triggered a robust immune response, evident in cytokine levels.
Q&As (23)
Ask a questionYes, AGAP3 belongs to a family of Arf GTPase-activating proteins (ArfGAPs) that share similar structural domains.
Yes, AGAP3 expression can vary between different tissues and cell types.
AGAP3 is primarily located in the cytoplasm of cells.
The molecular weight of AGAP3 is approximately 150 kDa.
Yes, AGAP3's involvement in vesicle trafficking is crucial for neuronal development and synaptic function.
AGAP3 is a protein that plays a role in intracellular trafficking and membrane dynamics.
AGAP3's involvement in vesicle trafficking and cell migration can contribute to tumor growth and metastasis in certain cancers.
AGAP3 acts as a GTPase-activating protein (GAP) for Arf GTPases, regulating their activity in intracellular trafficking pathways.
AGAP3 participates in endocytic processes by regulating the formation and trafficking of endocytic vesicles.
AGAP3's expression can be regulated by various factors, including cellular signaling pathways and transcriptional regulators.
The PH domain in AGAP3 is thought to be involved in membrane targeting and interaction with phospholipids.
AGAP3 influences cell migration by regulating the turnover of adhesion complexes and actin dynamics.
AGAP3 is involved in vesicle trafficking, endocytosis, and cell migration.
AGAP3 stands for Arf-GAP with GTPase domain, Ankyrin repeat, and PH domain 3.
Yes, AGAP3's function can be influenced by factors such as post-translational modifications and protein interactions.
The Ankyrin repeat in AGAP3 is believed to play a role in protein-protein interactions.
Researchers use techniques like molecular biology, microscopy, and cell culture experiments to study AGAP3's role in cells.
AGAP3 helps regulate the movement of vesicles within cells, aiding in the transportation of molecules.
Mutations in AGAP3 have been linked to certain neurological disorders and cancer progression.
Yes, AGAP3 can be found in various subcellular compartments, including the plasma membrane, endosomes, and Golgi apparatus.
Yes, AGAP3 can impact signal transduction pathways by regulating membrane trafficking of receptors and signaling molecules.
AGAP3's GAP activity is often activated by interactions with activated Arf GTPases, triggering the hydrolysis of GTP to GDP.
Knocking down or inhibiting AGAP3 can lead to disrupted vesicle trafficking, altered cell adhesion, and changes in cellular morphology.
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