All terms in UNIPROT
| Label | Id | Description |
|---|---|---|
| Xaa-Pro aminopeptidase 2 | O43895 | [Function: Membrane-bound metalloprotease which catalyzes the removal of a penultimate prolyl residue from the N-termini of peptides, such as Arg-Pro-Pro. May play a role in the metabolism of the vasodilator bradykinin.] |
| Kinesin-like protein KIF1C | O43896 | [Function: Motor required for the retrograde transport of Golgi vesicles to the endoplasmic reticulum. Has a microtubule plus end-directed motility.] |
| Tolloid-like protein 1 | O43897 | [Function: Protease which processes procollagen C-propeptides, such as chordin, pro-biglycan and pro-lysyl oxidase. Required for the embryonic development. Predominant protease, which in the development, influences dorsal-ventral patterning and skeletogenesis.] |
| Vomeronasal type-2 receptor 26 | Q6TAC4 | [Function: Putative pheromone receptor.] |
| Putative N-acetyltransferase 8B | E0CYC6 | [Function: May have a lysine N-acetyltransferase activity catalyzing peptidyl-lysine N6-acetylation of various proteins. Thereby, may regulate apoptosis through the acetylation and the regulation of the expression of PROM1. May also regulate amyloid beta-peptide secretion through acetylation of BACE1 and the regulation of its expression in neurons.] |
| Protein mono-ADP-ribosyltransferase PARP14 | Q2EMV9 | [Function: ADP-ribosyltransferase that mediates mono-ADP-ribosylation of glutamate residues on target proteins (PubMed:27796300). In contrast to PARP1 and PARP2, it is not able to mediate poly-ADP-ribosylation (By similarity). Catalyzes mono-ADP-ribosylating STAT1 at 'Glu-657' and 'Glu-705' and thus decreasing STAT1 phosphorylation, negatively regulates pro-inflammatory cytokines production in macrophages in response to IFNG stimulation (PubMed:27796300). However, the role of ADP-ribosylation in the prevention of STAT1 phosphorylation has been called into question and it has been suggested that the inhibition of phosphorylation may be the result of sumoylation of STAT1 'Lys-703' (PubMed:29858569). Mono-ADP-ribosylates STAT6; enhancing STAT6-dependent transcription (PubMed:27796300). In macrophages, positively regulates MRC1 expression in response to IL4 stimulation by promoting STAT6 phosphorylation (PubMed:27796300). Mono-ADP-ribosylates PARP9 (By similarity).] |
| UPF0472 protein C16orf72 homolog | Q14AM7 | |
| Putative inactive beta-glucuronidase protein GUSBP11 | Q6P575 | |
| Protein mono-ADP-ribosyltransferase PARP10 | Q53GL7 | [Function: ADP-ribosyltransferase that mediates mono-ADP-ribosylation of glutamate and aspartate residues on target proteins (PubMed:18851833, PubMed:23332125, PubMed:23474714, PubMed:25043379). In contrast to PARP1 and PARP2, it is not able to mediate poly-ADP-ribosylation (PubMed:18851833). Catalyzes mono-ADP-ribosylation of GSK3B, leading to negatively regulate GSK3B kinase activity (PubMed:23332125). Involved in translesion DNA synthesis in response to DNA damage via its interaction with PCNA (PubMed:24695737).] |
| Exosome complex component CSL4 | Q9DAA6 | [Function: Non-catalytic component of the RNA exosome complex which has 3'->5' exoribonuclease activity and participates in a multitude of cellular RNA processing and degradation events. In the nucleus, the RNA exosome complex is involved in proper maturation of stable RNA species such as rRNA, snRNA and snoRNA, in the elimination of RNA processing by-products and non-coding 'pervasive' transcripts, such as antisense RNA species and promoter-upstream transcripts (PROMPTs), and of mRNAs with processing defects, thereby limiting or excluding their export to the cytoplasm. The RNA exosome may be involved in Ig class switch recombination (CSR) and/or Ig variable region somatic hypermutation (SHM) by targeting AICDA deamination activity to transcribed dsDNA substrates. In the cytoplasm, the RNA exosome complex is involved in general mRNA turnover and specifically degrades inherently unstable mRNAs containing AU-rich elements (AREs) within their 3' untranslated regions, and in RNA surveillance pathways, preventing translation of aberrant mRNAs. It seems to be involved in degradation of histone mRNA. The catalytic inactive RNA exosome core complex of 9 subunits (Exo-9) is proposed to play a pivotal role in the binding and presentation of RNA for ribonucleolysis, and to serve as a scaffold for the association with catalytic subunits and accessory proteins or complexes. EXOSC1 as peripheral part of the Exo-9 complex stabilizes the hexameric ring of RNase PH-domain subunits through contacts with EXOSC6 and EXOSC8 (By similarity).] |
| Putative inactive cytochrome P450 2G1 | Q6ZSU1 | |
| Uncharacterized protein C4orf36 homolog | Q9DAA3 | |
| Probable inactive serine protease 37 | Q9DAA4 | [Function: Plays a role in male fertility (PubMed:23553430). May have a role in sperm migration or binding to zona-intact eggs (PubMed:23553430). Involved in the activation of the proacrosin/acrosin system (By similarity).] |
| Uncharacterized protein C1orf100 homolog | Q9DAA7 | |
| Bargin | Q6ZT62 | [Function: GTPase activating protein (GAP) which specifically converts GTP-bound RAC1 and CDC42 in their inactive GDP-bound form. The GAP activity is enhanced by the non-covalent binding of K-29 and K-48 polyubiquitin chains.] |
| Hepatoma-derived growth factor-like protein 1 | Q5TGJ6 | |
| Cyclic AMP-responsive element-binding protein 3 | O43889 | [Function: (Microbial infection) It's transcriptional activity is inhibited by CREBZF in a HCFC1-dependent manner, by the viral transactivator HCV core protein.] |
| Thrombospondin type-1 domain-containing protein 7B | Q6P4U0 | |
| Zinc finger protein 182 | Q6P560 | [Function: May be involved in transcriptional regulation.] |
| Homeobox protein Hox-A7 | P02830 | [Function: Sequence-specific transcription factor which is part of a developmental regulatory system that provides cells with specific positional identities on the anterior-posterior axis.] |