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RTN2 | Reticulon-2; Reticulon 2 (545 aa) | |||
SNX24 | Sorting nexin-24; May be involved in several stages of intracellular trafficking; Belongs to the sorting nexin family (169 aa) | |||
RTN1 | Reticulon-1; May be involved in neuroendocrine secretion or in membrane trafficking in neuroendocrine cells (776 aa) | |||
SNX14 | Sorting nexin-14; Plays a role in maintaining normal neuronal excitability and synaptic transmission. May be involved in several stages of intracellular trafficking (By similarity). Required for autophagosome clearance, possibly by mediating the fusion of lysosomes with autophagosomes (Probable). Binds phosphatidylinositol 3,5-bisphosphate (PtdIns(3,5)P2), a key component of late endosomes/lysosomes. Does not bind phosphatidylinositol 3-phosphate (PtdIns(3P)); Sorting nexins (946 aa) | |||
SNX22 | Sorting nexin-22; May be involved in several stages of intracellular trafficking (By similarity). Interacts with membranes containing phosphatidylinositol 3-phosphate (PtdIns(3P)); Belongs to the sorting nexin family (193 aa) | |||
SNX20 | Sorting nexin-20; May play a role in cellular vesicle trafficking. Has been proposed to function as a sorting protein that targets SELPLG into endosomes, but has no effect on SELPLG internalization from the cell surface, or on SELPLG-mediated cell-cell adhesion (316 aa) | |||
RTN4 | Reticulon-4; Developmental neurite growth regulatory factor with a role as a negative regulator of axon-axon adhesion and growth, and as a facilitator of neurite branching. Regulates neurite fasciculation, branching and extension in the developing nervous system. Involved in down-regulation of growth, stabilization of wiring and restriction of plasticity in the adult CNS. Regulates the radial migration of cortical neurons via an RTN4R-LINGO1 containing receptor complex (By similarity). Isoform 2 reduces the anti-apoptotic activity of Bcl-xl and Bcl-2. This is likely consecutive to thei [...] (1192 aa) | |||
PXK | PX domain-containing protein kinase-like protein; Binds to and modulates brain Na,K-ATPase subunits ATP1B1 and ATP1B3 and may thereby participate in the regulation of electrical excitability and synaptic transmission. May not display kinase activity (578 aa) | |||
RPS6KC1 | Ribosomal protein S6 kinase delta-1; May be involved in transmitting sphingosine-1 phosphate (SPP)-mediated signaling into the cell (1066 aa) | |||
SNX15 | Sorting nexin-15; May be involved in several stages of intracellular trafficking. Overexpression of SNX15 disrupts the normal trafficking of proteins from the plasma membrane to recycling endosomes or the TGN; Sorting nexins (342 aa) | |||
RTN3 | Reticulon-3; May be involved in membrane trafficking in the early secretory pathway. Inhibits BACE1 activity and amyloid precursor protein processing. May induce caspase-8 cascade and apoptosis. May favor BCL2 translocation to the mitochondria upon endoplasmic reticulum stress. In case of enteroviruses infection, RTN3 may be involved in the viral replication or pathogenesis. Induces the formation of endoplasmic reticulum tubules (1032 aa) | |||
C19orf12 | Protein C19orf12; Chromosome 19 open reading frame 12 (152 aa) | |||
SNX16 | Sorting nexin-16; May be involved in several stages of intracellular trafficking. Plays a role in protein transport from early to late endosomes. Plays a role in protein transport to the lysosome. Promotes degradation of EGFR after EGF signaling. Plays a role in intracellular transport of vesicular stomatitis virus nucleocapsids from the endosome to the cytoplasm; Belongs to the sorting nexin family (344 aa) | |||
SGK3 | Serum/glucocorticoid regulated kinase family, member 3; Serine/threonine-protein kinase which is involved in the regulation of a wide variety of ion channels, membrane transporters, cell growth, proliferation, survival and migration. Up-regulates Na(+) channels- SCNN1A/ENAC and SCN5A, K(+) channels- KCNA3/KV1.3, KCNE1, KCNQ1 and KCNH2/HERG, epithelial Ca(2+) channels- TRPV5 and TRPV6, chloride channel- BSND, creatine transporter- SLC6A8, Na(+)/dicarboxylate cotransporter- SLC13A2/NADC1, Na(+)-dependent phosphate cotransporter- SLC34A2/NAPI-2B, amino acid transporters- SLC1A5/ASCT2 and [...] (496 aa) | |||
KIF16B | Kinesin-like protein KIF16B; Plus end-directed microtubule-dependent motor protein involved in endosome transport and receptor recycling and degradation. Regulates the plus end motility of early endosomes and the balance between recycling and degradation of receptors such as EGF receptor (EGFR) and FGF receptor (FGFR). Regulates the Golgi to endosome transport of FGFR-containing vesicles during early development, a key process for developing basement membrane and epiblast and primitive endoderm lineages during early postimplantation development; Kinesins (1392 aa) | |||
SNX13 | Sorting nexin-13; May be involved in several stages of intracellular trafficking. May play a role in endosome homeostasis (By similarity). Acts as a GAP for Galphas; Belongs to the sorting nexin family (957 aa) | |||
SNX21 | Sorting nexin-21; Binds to membranes enriched in phosphatidylinositol 3- phosphate (PtdIns(P3)) and phosphatidylinositol 4,5-bisphosphate. May be involved in several stages of intracellular trafficking; Belongs to the sorting nexin family (373 aa) | |||
SNX25 | Sorting nexin-25; May be involved in several stages of intracellular trafficking; Sorting nexins (840 aa) | |||
ENSG00000270024 | Serine/threonine-protein kinase Sgk3; Serine/threonine-protein kinase which is involved in the regulation of a wide variety of ion channels, membrane transporters, cell growth, proliferation, survival and migration. Up-regulates Na(+) channels- SCNN1A/ENAC and SCN5A, K(+) channels- KCNA3/KV1.3, KCNE1, KCNQ1 and KCNH2/HERG, epithelial Ca(2+) channels- TRPV5 and TRPV6, chloride channel- BSND, creatine transporter- SLC6A8, Na(+)/dicarboxylate cotransporter- SLC13A2/NADC1, Na(+)-dependent phosphate cotransporter- SLC34A2/NAPI-2B, amino acid transporters- SLC1A5/ASCT2 and SLC6A19, glutamate [...] (496 aa) | |||
SNX29 | Sorting nexin 29 (813 aa) | |||
IKBKG | NF-kappa-B essential modulator; Regulatory subunit of the IKK core complex which phosphorylates inhibitors of NF-kappa-B thus leading to the dissociation of the inhibitor/NF-kappa-B complex and ultimately the degradation of the inhibitor. Its binding to scaffolding polyubiquitin seems to play a role in IKK activation by multiple signaling receptor pathways. However, the specific type of polyubiquitin recognized upon cell stimulation (either ’Lys-63’- linked or linear polyubiquitin) and its functional importance is reported conflictingly. Also considered to be a mediator for TAX activat [...] (487 aa) |