All terms in UNIPROT
| Label | Id | Description |
|---|---|---|
| Proton-coupled amino acid transporter 3 | Q811P0 | |
| BTB/POZ domain-containing protein KCTD8 | Q6ZWB6 | [Function: Auxiliary subunit of GABA-B receptors that determine the pharmacology and kinetics of the receptor response. Increases agonist potency and markedly alter the G-protein signaling of the receptors by accelerating onset and promoting desensitization (By similarity).] |
| Zinc finger RNA-binding protein | Q562A2 | [Function: Involved in postimplantation and gastrulation stages of development (By similarity). Binds to DNA and RNA (By similarity). Involved in the nucleocytoplasmic shuttling of STAU2.] |
| Rho GTPase-activating protein 32 | Q811P8 | [Function: GTPase-activating protein (GAP) promoting GTP hydrolysis on RHOA, CDC42 and RAC1 small GTPases. May be involved in the differentiation of neuronal cells during the formation of neurite extensions. Involved in NMDA receptor activity-dependent actin reorganization in dendritic spines. May mediate cross-talks between Ras- and Rho-regulated signaling pathways in cell growth regulation. Isoform 2 has higher GAP activity.] |
| Retinal dehydrogenase 1 | P24549 | [Function: Can convert/oxidize retinaldehyde to retinoic acid. Binds free retinal and cellular retinol-binding protein-bound retinal (By similarity). May have a broader specificity and oxidize other aldehydes in vivo (By similarity).] |
| CSC1-like protein 2 | Q3TWI9 | [Function: Acts as an osmosensitive calcium-permeable cation channel.] |
| Glutathione hydrolase 6 | Q6IE08 | [Function: Cleaves glutathione conjugates.] |
| Zinc finger protein 830 | Q8R1N0 | [Function: May play a role in pre-mRNA splicing as component of the spliceosome (By similarity). Acts as an important regulator of the cell cycle that participates in the maintenance of genome integrity (PubMed:21191184, PubMed:23213458, PubMed:25168238, PubMed:15988037). During cell cycle progression in embryonic fibroblast, prevents replication fork collapse, double-strand break formation and cell cycle checkpoint activation (PubMed:21191184). Controls mitotic cell cycle progression and cell survival in rapidly proliferating intestinal epithelium and embryonic stem cells (PubMed:23213458). During the embryo preimplantation, controls different aspects of M phase (PubMed:15988037). During early oocyte growth, plays a role in oocyte survival by preventing chromosomal breaks formation, activation of TP63 and reduction of transcription (PubMed:25168238).] |
| Inosine-5'-monophosphate dehydrogenase 2 | P24547 | [Function: Catalyzes the conversion of inosine 5'-phosphate (IMP) to xanthosine 5'-phosphate (XMP), the first committed and rate-limiting step in the de novo synthesis of guanine nucleotides, and therefore plays an important role in the regulation of cell growth. Could also have a single-stranded nucleic acid-binding activity and could play a role in RNA and/or DNA metabolism. It may also have a role in the development of malignancy and the growth progression of some tumors.] |
| Putative inactive serine protease 58 | Q6IE06 | |
| NudC domain-containing protein 3 | Q8R1N4 | |
| Calcium-activated potassium channel subunit beta-2 | Q811Q0 | [Function: Regulatory subunit of the calcium activated potassium KCNMA1 (maxiK) channel. Modulates the calcium sensitivity and gating kinetics of KCNMA1, thereby contributing to KCNMA1 channel diversity. Acts as a negative regulator that confers rapid and complete inactivation of KCNMA1 channel complex (By similarity).] |
| Kinesin-1 heavy chain | Q2PQA9 | [Function: Microtubule-dependent motor required for normal distribution of mitochondria and lysosomes. Can induce formation of neurite-like membrane protrusions in non-neuronal cells in a ZFYVE27-dependent manner. Regulates centrosome and nuclear positioning during mitotic entry. During the G2 phase of the cell cycle in a BICD2-dependent manner, antagonizes dynein function and drives the separation of nuclei and centrosomes (By similarity). Required for anterograde axonal transportation of MAPK8IP3/JIP3 which is essential for MAPK8IP3/JIP3 function in axon elongation (PubMed:23576431).] |
| Single-strand selective monofunctional uracil-DNA glycosylase | Q811Q1 | [Function: Recognizes base lesions in the genome and initiates base excision DNA repair. Acts as a monofunctional DNA glycosylase specific for uracil (U) residues in DNA with a preference for single-stranded DNA substrates. The activity is greater toward mismatches (U/G) compared to matches (U/A). Excises uracil (U), 5-formyluracil (fU) and uracil derivatives bearing an oxidized group at C5 [5-hydroxyuracil (hoU) and 5-hydroxymethyluracil (hmU)] in ssDNA and dsDNA, but not analogous cytosine derivatives (5-hydroxycytosine and 5-formylcytosine), nor other oxidized bases. The activity is damage-specific and salt-dependent. The substrate preference is the following: ssDNA > dsDNA (G pair) = dsDNA (A pair) at low salt concentration, and dsDNA (G pair) > dsDNA (A pair) > ssDNA at high salt concentration.] |
| Chloride intracellular channel protein 6 | Q811Q2 | [Function: May insert into membranes and form chloride ion channels. May play a critical role in water-secreting cells, possibly through the regulation of chloride ion transport (By similarity).] |
| Disintegrin and metalloproteinase domain-containing protein 29 | Q811Q4 | [Function: May be involved in spermatogenesis and fertilization. Seems to be a non catalytic metalloprotease-like protein (By similarity).] |
| Choline-phosphate cytidylyltransferase B | Q811Q9 | [Function: Controls phosphatidylcholine synthesis.] |
| Adenylate kinase isoenzyme 1 | P00568 | [Function: Catalyzes the reversible transfer of the terminal phosphate group between ATP and AMP. Also displays broad nucleoside diphosphate kinase activity. Plays an important role in cellular energy homeostasis and in adenine nucleotide metabolism.] |
| ATP synthase F(0) complex subunit B1, mitochondrial | P24539 | [Function: Mitochondrial membrane ATP synthase (F(1)F(0) ATP synthase or Complex V) produces ATP from ADP in the presence of a proton gradient across the membrane which is generated by electron transport complexes of the respiratory chain. F-type ATPases consist of two structural domains, F(1) - containing the extramembraneous catalytic core, and F(0) - containing the membrane proton channel, linked together by a central stalk and a peripheral stalk. During catalysis, ATP synthesis in the catalytic domain of F(1) is coupled via a rotary mechanism of the central stalk subunits to proton translocation. Part of the complex F(0) domain and the peripheric stalk, which acts as a stator to hold the catalytic alpha(3)beta(3) subcomplex and subunit a/ATP6 static relative to the rotary elements.] |
| WD repeat-containing protein 70 | Q3TWF6 |