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SNX1 encodes a member of the sorting nexin family. Additionally we are shipping Sorting Nexin 1 Antibodies (97) and Sorting Nexin 1 Proteins (15) and many more products for this protein.
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miR (show MLXIP ELISA Kits)-95 functions as an oncogene (show RAB1A ELISA Kits) role in non-small cell lung cancer cells by directly targeting SNX1.
Results show that suppression of EGFR (show EGFR ELISA Kits) membrane recycling by SNX1 appears to be critical for the activation of EGFR (show EGFR ELISA Kits) /PI3K (show PIK3CA ELISA Kits)/AKT (show AKT1 ELISA Kits) signaling pathway in human lung cancer cells.
we suggest that SNX1 is involved in the negative regulation of ligand-induced EGFR (show EGFR ELISA Kits) phosphorylation and mediates EGFR (show EGFR ELISA Kits)/pEGFR trafficking out of early endosomes
SNX1 has a crucial role in D(5)R trafficking and SNX1 depletion results in D(5)R dysfunction and thus may represent a novel mechanism for the pathogenesis of essential hypertension
This study found that significant evidence of association with SNX1 (VEGAS p = 0.035) in patient with Alzheimer disease.
SNX4, but not SNX1 and SNX8, is associated with the Rab11-recycling endosomes and that a high frequency of SNX4-mediated tubule formation is observed as endosomes undergo Rab4-to-Rab11 transition.
Results demonstrate that miR (show MLXIP ELISA Kits)-95 increases proliferation by directly targeting SNX1, defining miR (show MLXIP ELISA Kits)-95 as a new oncogenic miRNA in CRC (show CALR ELISA Kits).
SNX1 and SNX2 interact with Kalirin-7. Overexpression of SNX1 or SNX2 and Kalirin-7 partially redistributes both SNXs to the plasma membrane, and results in RhoG-dependent lamellipodia formation.
These data describe a novel function of SNX1 in the regulation of P2Y(1) receptor recycling and suggest that SNX1 plays multiple roles in endocytic trafficking of G-protein coupled receptors.
controls down-regulation of protease-activated receptor-1 (show F2R ELISA Kits)
SNX1 interacts with Arf6 (show ARF6 ELISA Kits) to mediate neurite formation which is regulated by EFA6A (show PSD ELISA Kits).
A RUN Domain from DENND5/Rab6IP1 binds sorting Nexin 1 and is involved in the trafficking of vesicles at the level of Golgi.
show that mice lacking sorting nexin 1 or sorting nexin 2 (show SNX2 ELISA Kits) are viable and fertile, whereas embryos deficient in both proteins arrest at midgestation.
HkRP1 (show CCDC88A ELISA Kits) is involved in the process of tubulation of sorting nexin-1 positive membranes from early endosome subdomains
Data describe a functional interaction between Hbeta58, sorting nexin 1 (SNX1), and SNX2 (show SNX2 ELISA Kits) and strongly suggest that SNX2 (show SNX2 ELISA Kits) plays a more critical role than SNX1 in retromer activity during embryonic development.
A loss of FAB1 function causes the release of late endosomal proteins, Ara7, and SNX1 from the endosome membrane, indicating that FAB1, or its product PtdIns(3,5)P2, mediates the maturation process of the late endosomes.
High temperature selectively promotes the retrieval of PIN2 (show TERF1 ELISA Kits) from late endosomes and sorts them to the plasma membrane through an endosomal trafficking pathway dependent on SORTING NEXIN1.
Our results reveal a role of SNX1 for the correct trafficking of IRT1 (show PARP3 ELISA Kits) and, thus, for modulating the activity of the iron uptake machinery
SNX1 phosphorylation is required for Arabidopsis seedling growth.
the microtubule-associated protein (show FAM82A2 ELISA Kits) CLASP (show CLASRP ELISA Kits) interacts with the retromer component sorting nexin 1 (SNX1) to mediate an association between endosomes and microtubules.
A combination of immunoelectron and fluorescence microscopy show that sorting nexin 1 (SNX1)localize to the trans-Golgi network (TGN (show TG ELISA Kits)), which is considered to represent the early endosome of plants.
Arabidopsis thaliana SORTING NEXIN 1 (AtSNX1) is involved in the auxin pathway and that PIN2 (show TERF1 ELISA Kits), but not PIN1 or AUX1, is transported through AtSNX1-containing endosomes [AtSNX1]
This gene encodes a member of the sorting nexin family. Members of this family contain a phox (PX) domain, which is a phosphoinositide binding domain, and are involved in intracellular trafficking. This endosomal protein regulates the cell-surface expression of epidermal growth factor receptor. This protein also has a role in sorting protease-activated receptor-1 from early endosomes to lysosomes. This protein may form oligomeric complexes with family members. This gene results in three transcript variants encoding distinct isoforms.
sorting nexin 1
, nexin 1
, sorting nexin-1
, Sorting nexin-1
, sorting nexin 1A