All terms in UNIPROT
| Label | Id | Description |
|---|---|---|
| Cilia- and flagella-associated protein 47 | Q6ZTR5 | |
| Cancer-related regulator of actin dynamics | Q6ZU35 | [Function: Involved in epithelial cell integrity by acting on the maintenance of the actin cytoskeleton. Positively regulates the actin polymerization, by inhibiting the interaction of actin-capping proteins with actin.] |
| Ribonuclease kappa | Q6P5S7 | [Function: (Microbial infection) Required for the initial stages of clathrin-mediated endocytic uptake of a diverse set of viruses, including dengue, West Nile, Sindbis, Rift Valley Fever, and influenza viruses (PubMed:26056282). Not required for clathrin-mediated endocytosis and macropinocytosis (PubMed:26056282).] |
| Putative uncharacterized protein C18orf65 | Q6ZTR6 | |
| Protein FAM92B | Q6ZTR7 | [Function: May play a role in ciliogenesis (By similarity). In cooperation with CBY1 may facilitate ciliogenesis likely by the recruitment and fusion of endosomal vesicles at distal appendages during early stages of ciliogenesis (PubMed:27528616).] |
| Protein LEG1 homolog | Q6P5S2 | [Function: May be involved in early liver development.] |
| Cartilage matrix protein | P51942 | [Function: Cartilage matrix protein is a major component of the extracellular matrix of non-articular cartilage. It binds to collagen.] |
| Cyclin-A2 | P51943 | [Function: Cyclin which controls both the G1/S and the G2/M transition phases of the cell cycle. Functions through the formation of specific serine/threonine kinase holoenzyme complexes with the cyclin-dependent protein kinases CDK1 and CDK2. The cyclin subunit confers the substrate specificity of these complexes and differentially interacts with and activates CDK1 and CDK2 throughout the cell cycle.] |
| Cyclin-F | P51944 | [Function: Substrate recognition component of a SCF (SKP1-CUL1-F-box protein) E3 ubiquitin-protein ligase complex which mediates the ubiquitination and subsequent proteasomal degradation of CP110 during G2 phase, thereby acting as an inhibitor of centrosome reduplication.] |
| Cyclin-G1 | P51945 | [Function: May play a role in growth regulation. Is associated with G2/M phase arrest in response to DNA damage. May be an intermediate by which p53 mediates its role as an inhibitor of cellular proliferation.] |
| Ecto-ADP-ribosyltransferase 4 | Q93070 | |
| Glucose-6-phosphate exchanger SLC37A1 | Q8R070 | [Function: Inorganic phosphate and glucose-6-phosphate antiporter. May transport cytoplasmic glucose-6-phosphate into the lumen of the endoplasmic reticulum and translocate inorganic phosphate into the opposite direction. Independent of a lumenal glucose-6-phosphatase. May not play a role in homeostatic regulation of blood glucose levels.] |
| Vesicular integral-membrane protein VIP36 | Q9DBH5 | [Function: Plays a role as an intracellular lectin in the early secretory pathway. Interacts with N-acetyl-D-galactosamine and high-mannose type glycans and may also bind to O-linked glycans. Involved in the transport and sorting of glycoproteins carrying high mannose-type glycans (By similarity).] |
| RNA-binding protein with multiple splicing | Q93062 | [Function: Acts as a coactivator of transcriptional activity. Required to increase TGFB1/Smad-mediated transactivation. Acts through SMAD2, SMAD3 and SMAD4 to increase transcriptional activity. Increases phosphorylation of SMAD2 and SMAD3 on their C-terminal SSXS motif, possibly through recruitment of TGFBR1. Promotes the nuclear accumulation of SMAD2, SMAD3 and SMAD4 proteins (PubMed:26347403). Binds to poly(A) RNA (PubMed:17099224, PubMed:26347403).] |
| Exostosin-2 | Q93063 | [Function: Glycosyltransferase required for the biosynthesis of heparan-sulfate. The EXT1/EXT2 complex possesses substantially higher glycosyltransferase activity than EXT1 or EXT2 alone. Appears to be a tumor suppressor. Required for the exosomal release of SDCBP, CD63 and syndecan (PubMed:22660413).] |
| Protein zwilch homolog | Q8R060 | [Function: Essential component of the mitotic checkpoint, which prevents cells from prematurely exiting mitosis. Required for the assembly of the dynein-dynactin and MAD1-MAD2 complexes onto kinetochores. Its function related to the spindle assembly machinery is proposed to depend on its association in the mitotic RZZ complex (By similarity).] |
| Complement C1q tumor necrosis factor-related protein 4 | Q8R066 | [Function: May be involved in the regulation of the inflammatory network. The role as pro- or anti-inflammatory seems to be context dependent (By similarity). Seems to have some role in regulating food intake and energy balance when administered in the brain. This effect is sustained over a two-day period, and it is accompanied by decreased expression of orexigenic neuropeptides in the hypothalamus 3 h post-injection (Probable).] |
| Cyclin-H | P51946 | [Function: Regulates CDK7, the catalytic subunit of the CDK-activating kinase (CAK) enzymatic complex. CAK activates the cyclin-associated kinases CDK1, CDK2, CDK4 and CDK6 by threonine phosphorylation. CAK complexed to the core-TFIIH basal transcription factor activates RNA polymerase II by serine phosphorylation of the repetitive C-terminal domain (CTD) of its large subunit (POLR2A), allowing its escape from the promoter and elongation of the transcripts. Involved in cell cycle control and in RNA transcription by RNA polymerase II. Its expression and activity are constant throughout the cell cycle.] |
| Palmitoyltransferase ZDHHC18 | Q5Y5T2 | [Function: Has palmitoyltransferase activity towards HRAS and LCK.] |
| NEDD4-like E3 ubiquitin-protein ligase WWP2 | Q9DBH0 | [Function: E3 ubiquitin-protein ligase which accepts ubiquitin from an E2 ubiquitin-conjugating enzyme in the form of a thioester and then directly transfers the ubiquitin to targeted substrates. Polyubiquitinates POU5F1 by 'Lys-63'-linked conjugation and promotes it to proteasomal degradation; regulates POU5F1 protein level during differentiation of embryonal carcinoma cells (ECCs) but not in undifferentiated ECCs and embryonic stem cells (ESCs). Ubiquitinates EGR2 and promotes it to proteasomal degradation; in T-cells the ubiquitination inhibits activation-induced cell death. Ubiquitinates SLC11A2; the ubiquitination is enhanced by presence of NDFIP1 and NDFIP2. Ubiquitinates RPB1 and promotes it to proteasomal degradation.] |