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Erythrocyte membrane protein band 4.1 (EPB41) is a multifunctional protein that mediates interactions between the erythrocyte cytoskeleton and the overlying plasma membrane.
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Data show that overexpression of 4.1N protein decreased expression of flotillin-1 (show FLOT1 Proteins), decreased activation of beta-catenin (show CTNNB1 Proteins)/Wnt (show WNT2 Proteins) pathway in non-small-cell lung cancer (NSCLC) cells.
Data suggest that repression of JNK-c-Jun signaling through pancreatic polypeptide receptor 1 (PP1) is one of the key anti-tumor mechanisms of neuronal membrane cytoskeletal protein 4.1 (4.1N).
the data of the current study identified 4.1N as an inhibitor of hypoxiainduced tumor progression in epithelial ovarian cancer cells.
Kainate receptor GluK2a post-translational modifications differentially regulate association with 4.1N to control activity-dependent receptor endocytosis
protein 4.1N/dopamine receptor interaction is required for localization or stability of dopamine receptors at the neuronal plasma membrane.
study describes a previously unknown mechanism that governs activity-dependent GluR1 (show GRIA1 Proteins) trafficking, reveals an interaction between AMPAR palmitoylation and phosphorylation, and underscores the importance of 4.1N in AMPAR trafficking and synaptic plasticity.
Erythrocyte membrane protein band 4.1 (EPB41) is a multifunctional protein that mediates interactions between the erythrocyte cytoskeleton and the overlying plasma membrane. The protein encoded by this gene is a neuronally-enriched protein that is structurally similar to EPB41. The encoded protein binds and stabilizes D2 and D3 dopamine receptors at the neuronal plasma membrane. Multiple transcript variants encoding different isoforms have been found for this gene.
band 4.1-like protein 1
, neuron-type nonerythroid protein 4.1
, neuronal protein 4.1
, erythrocyte protein band 4.1-like 1