All terms in UNIPROT
| Label | Id | Description |
|---|---|---|
| Adhesion G protein-coupled receptor L2 | Q8JZZ7 | [Function: Calcium-independent receptor of low affinity for alpha-latrotoxin, an excitatory neurotoxin present in black widow spider venom which triggers massive exocytosis from neurons and neuroendocrine cells. Receptor probably implicated in the regulation of exocytosis.] |
| Uncharacterized protein C7orf65 | Q6ZTY9 | |
| Pigment epithelium-derived factor | P97298 | [Function: Neurotrophic protein; induces extensive neuronal differentiation in retinoblastoma cells. Potent inhibitor of angiogenesis. As it does not undergo the S (stressed) to R (relaxed) conformational transition characteristic of active serpins, it exhibits no serine protease inhibitory activity.] |
| AMMECR1-like protein | Q8JZZ6 | |
| ADM | P97297 | [Function: AM and PAMP are potent hypotensive and vasodilatator agents.] |
| Neuropeptide Y receptor type 2 | P97295 | [Function: Receptor for neuropeptide Y and peptide YY.] |
| Probable imidazolonepropionase | Q9DBA8 | |
| General transcription factor IIH subunit 1 | Q9DBA9 | [Function: Component of the general transcription and DNA repair factor IIH (TFIIH) core complex, which is involved in general and transcription-coupled nucleotide excision repair (NER) of damaged DNA and, when complexed to CAK, in RNA transcription by RNA polymerase II. In NER, TFIIH acts by opening DNA around the lesion to allow the excision of the damaged oligonucleotide and its replacement by a new DNA fragment. In transcription, TFIIH has an essential role in transcription initiation. When the pre-initiation complex (PIC) has been established, TFIIH is required for promoter opening and promoter escape. Phosphorylation of the C-terminal tail (CTD) of the largest subunit of RNA polymerase II by the kinase module CAK controls the initiation of transcription.] |
| Peroxisomal leader peptide-processing protease | Q9DBA6 | [Function: Peroxisomal protease that mediates both the removal of the leader peptide from proteins containing a PTS2 target sequence and processes several PTS1-containing proteins. Catalyzes the processing of PTS1-proteins involved in the peroxisomal beta-oxidation of fatty acids (By similarity).] |
| Glutathione S-transferase alpha-4 | P14942 | [Function: Conjugation of reduced glutathione to a wide number of exogenous and endogenous hydrophobic electrophiles.] |
| Pentatricopeptide repeat domain-containing protein 3, mitochondrial | Q14C51 | [Function: Mitochondrial RNA-binding protein that has a role in mitochondrial translation.] |
| Hepatocyte growth factor-like protein | P26928 | |
| Protein O-mannose kinase | Q3TUA9 | [Function: Protein O-mannose kinase that specifically mediates phosphorylation at the 6-position of an O-mannose of the trisaccharide (N-acetylgalactosamine (GalNAc)-beta-1,3-N-acetylglucosamine (GlcNAc)-beta-1,4-mannose) to generate phosphorylated O-mannosyl trisaccharide (N-acetylgalactosamine-beta-1,3-N-acetylglucosamine-beta-1,4-(phosphate-6-)mannose). Phosphorylated O-mannosyl trisaccharide is a carbohydrate structure present in alpha-dystroglycan (DAG1), which is required for binding laminin G-like domain-containing extracellular proteins with high affinity. Only shows kinase activity when the GalNAc-beta-3-GlcNAc-beta-terminus is linked to the 4-position of O-mannose, suggesting that this disaccharide serves as the substrate recognition motif (By similarity).] |
| Putative speedy protein-like protein 3 | A6NJR5 | |
| GTPase IMAP family member 9 | G3X987 | |
| Alpha-1,4-N-acetylglucosaminyltransferase | Q14BT6 | [Function: Catalyzes the transfer of N-acetylglucosamine (GlcNAc) to core 2 branched O-glycans. Necessary for the synthesis of type III mucin which is specifically produced in the stomach, duodenum, and pancreatic duct. May protect against inflammation-associated gastric adenocarcinoma.] |
| Zinc finger protein 280D | Q6N043 | [Function: May function as a transcription factor.] |
| Aldehyde oxidase 3 | G3X982 | [Function: Oxidase with broad substrate specificity, oxidizing aromatic azaheterocycles, such as N1-methylnicotinamide and phthalazine, as well as aldehydes, such as benzaldehyde, retinal and pyridoxal. Plays a key role in the metabolism of xenobiotics and drugs containing aromatic azaheterocyclic substituents. Is probably involved in the regulation of reactive oxygen species homeostasis. May be a prominent source of superoxide generation via the one-electron reduction of molecular oxygen. Also may catalyze nitric oxide (NO) production via the reduction of nitrite to NO with NADH or aldehyde as electron donor.] |
| Transmembrane protease serine 11B-like protein | Q14C59 | [Function: Serine protease.] |
| Lipase member J | Q5W064 |