Anti-Human GIT1 Antibody Pair

Anti-Human GIT1 Antibody Pair
Artikelnummer Größe Datenblatt Manual SDB Lieferzeit Menge Preis
ABS-ES-1323.1 1 pair (100 µg/100 µg) - -

10 - 14 Werktage*

1.080,00 €
 
Product Description: GIT ArfGAP 1 (GIT1), encoded by the GIT1 gene, is a multidomain scaffolding... mehr
Produktinformationen "Anti-Human GIT1 Antibody Pair"
Product Description: GIT ArfGAP 1 (GIT1), encoded by the GIT1 gene, is a multidomain scaffolding protein that regulates intracellular signaling, vesicular trafficking, and cytoskeletal dynamics. It functions as an Arf GTPase-activating protein (ArfGAP), catalyzing GTP hydrolysis in ADP-ribosylation factor (ARF) proteins to modulate membrane trafficking and receptor internalization. GIT1 contains an N-terminal ArfGAP domain, ankyrin repeats, a Spa2 homology domain (SHD), and a coiled-coil region, enabling interactions with partners like PAK kinases, PIX proteins, and focal adhesion complexes. These interactions position GIT1 as a critical node in signaling pathways controlling cell adhesion, migration, and synaptic plasticity. GIT1 also localizes to postsynaptic densities, influencing dendritic spine morphogenesis and neurotransmission. Dysregulation of GIT1 is linked to neuropsychiatric disorders, particularly attention deficit hyperactivity disorder (ADHD) and schizophrenia, with studies implicating altered GIT1 expression or function in synaptic deficits underlying these conditions. Additionally, GIT1 interacts with beta-arrestin in GPCR signaling, further connecting it to neuronal and developmental processes. Protein Function: GTPase-activating protein for ADP ribosylation factor family members, including ARF1. Multidomain scaffold protein that interacts with numerous proteins and therefore participates in many cellular functions, including receptor internalization, focal adhesion remodeling, and signaling by both G protein-coupled receptors and tyrosine kinase receptors (By similarity). Through PAK1 activation, positively regulates microtubule nucleation during interphase (PubMed:27012601). Plays a role in the regulation of cytokinesis, for this function, may act in a pathway also involving ENTR1 and PTPN13 (PubMed:23108400). May promote cell motility both by regulating focal complex dynamics and by local activation of RAC1 (PubMed:10938112, PubMed:11896197). May act as scaffold for MAPK1/3 signal transduction in focal adhesions. Recruits MAPK1/3/ERK1/2 to focal adhesions after EGF stimulation via a Src-dependent pathway, hence stimulating cell migration (PubMed:15923189). Plays a role in brain development and function. Involved in the regulation of spine density and synaptic plasticity that is required for processes involved in learning (By similarity). Plays an important role in dendritic spine morphogenesis and synapse formation (PubMed:12695502, PubMed:15800193). In hippocampal neurons, recruits guanine nucleotide exchange factors (GEFs), such as ARHGEF7/beta-PIX, to the synaptic membrane. These in turn locally activate RAC1, which is an essential step for spine morphogenesis and synapse formation (PubMed:12695502). May contribute to the organization of presynaptic active zones through oligomerization and formation of a Piccolo/PCLO-based protein network, which includes ARHGEF7/beta-PIX and FAK1 (By similarity). In neurons, through its interaction with liprin-alpha family members, may be required for AMPA receptor (GRIA2/3) proper targeting to the cell membrane (By similarity). In complex with GABA(A) receptors and ARHGEF7, plays a crucial role in regulating GABA(A) receptor synaptic stability, maintaining GPHN/gephyrin scaffolds and hence GABAergic inhibitory synaptic transmission, by locally coordinating RAC1 and PAK1 downstream effector activity, leading to F-actin stabilization (PubMed:25284783). May also be important for RAC1 downstream signaling pathway through PAK3 and regulation of neuronal inhibitory transmission at presynaptic input (By similarity). Required for successful bone regeneration during fracture healing (By similarity). The function in intramembranous ossification may, at least partly, exerted by macrophages in which GIT1 is a key negative regulator of redox homeostasis, IL1B production, and glycolysis, acting through the ERK1/2/NRF2/NFE2L2 axis (By similarity). May play a role in angiogenesis during fracture healing (By similarity). In this process, may regulate activation of the canonical NF-kappa-B signal in bone mesenchymal stem cells by enhancing the interaction between NEMO and 'Lys-63'-ubiquitinated RIPK1/RIP1, eventually leading to enhanced production of VEGFA and others angiogenic factors (PubMed:31502302). Essential for VEGF signaling through the activation of phospholipase C-gamma and ERK1/2, hence may control endothelial cell proliferation and angiogenesis (PubMed:19273721) [The Uniprot Consortium]
Schlagworte: Anti-GIT1, Anti-p95-APP1, Anti-GRK-interacting protein 1, Anti-ARF GTPase-activating protein GIT1, Anti-G protein-coupled receptor kinase-interactor 1, Anti-Cool-associated and tyrosine-phosphorylated protein 1, Human GIT1 Antibody Pair
Hersteller: Absea
Hersteller-Nr: ES-1323

Eigenschaften

Anwendung: ELISA
Antikörper-Typ: Monoclonal
Klon: K1L009_7A7/K1L007_27D8
Konjugat: No
Wirt: Mouse/Mouse
Spezies-Reaktivität: human
Reinheit: >85%
Format: Solution

Handhabung & Sicherheit

Lagerung: -20°C (avoid repeat freezing and thawing cycles)
Versand: -20°C (International: +4°C)
Achtung
Nur für Forschungszwecke und Laboruntersuchungen: Nicht für die Anwendung im oder am Menschen!
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