Search Results
Overview
| Uniprot ID | P00966 |
|---|---|
| Protein Name | Argininosuccinate synthase |
| Gene Name | ASS1 |
| Organism | Homo sapiens |
Kla Sites from experimental identification
| Position | Flanking peptide |
|---|---|
| 101 | ARPCIARKQVEIAQR |
| 112 | IAQREGAKYVSHGAT |
| 121 | VSHGATGKGNDQVRF |
| 165 | NDLMEYAKQHGIPIP |
| 209 | APPGLYTKTQDPAKA |
| 215 | TKTQDPAKAPNTPDI |
| 228 | DILEIEFKKGVPVKV |
| 234 | FKKGVPVKVTNVKDG |
| 277 | ENRFIGMKSRGIYET |
| 310 | DREVRKIKQGLGLKF |
| 340 | FVRHCIAKSQERVEG |
| 348 | SQERVEGKVQVSVLK |
| 355 | KVQVSVLKGQVYILG |
| 408 | EYHRLQSKVTAK*** |
| 53 | EARKKALKLGAKKVF |
| 58 | ALKLGAKKVFIEDVS |
Function
One of the enzymes of the urea cycle, the metabolic pathway transforming neurotoxic amonia produced by protein catabolism into inocuous urea in the liver of ureotelic animals. Catalyzes the formation of arginosuccinate from aspartate, citrulline and ATP and together with ASL it is responsible for the biosynthesis of arginine in most body tissues
Protein Sequence
Gene Ontology
| Classification | GO ID | Description |
|---|---|---|
| Biological Process | GO:0000053 | argininosuccinate metabolic process |
| Cellular Component | GO:0070852 | cell body fiber |
| Cellular Component | GO:0005737 | cytoplasm |
| Cellular Component | GO:0005829 | cytosol |
| Cellular Component | GO:0070062 | extracellular exosome |
| Cellular Component | GO:0005741 | mitochondrial outer membrane |
| Cellular Component | GO:0043204 | perikaryon |
| Molecular Function | GO:0016597 | amino acid binding |
| Molecular Function | GO:0004055 | argininosuccinate synthase activity |
| Molecular Function | GO:0005524 | ATP binding |
| Molecular Function | GO:0042802 | identical protein binding |
| Molecular Function | GO:0003723 | RNA binding |
| Molecular Function | GO:0015643 | toxic substance binding |
| Biological Process | GO:0006953 | acute-phase response |
| Biological Process | GO:0006531 | aspartate metabolic process |
| Biological Process | GO:0071418 | cellular response to amine stimulus |
| Biological Process | GO:0071230 | cellular response to amino acid stimulus |
| Biological Process | GO:0071242 | cellular response to ammonium ion |
| Biological Process | GO:0071320 | cellular response to cAMP |
| Biological Process | GO:0071549 | cellular response to dexamethasone stimulus |
| Biological Process | GO:0071377 | cellular response to glucagon stimulus |
| Biological Process | GO:0071499 | cellular response to laminar fluid shear stress |
| Biological Process | GO:0071222 | cellular response to lipopolysaccharide |
| Biological Process | GO:0071400 | cellular response to oleic acid |
| Biological Process | GO:0071356 | cellular response to tumor necrosis factor |
| Biological Process | GO:0071346 | cellular response to type II interferon |
| Biological Process | GO:0007623 | circadian rhythm |
| Biological Process | GO:0000052 | citrulline metabolic process |
| Biological Process | GO:0060539 | diaphragm development |
| Biological Process | GO:0001822 | kidney development |
| Biological Process | GO:0006526 | L-arginine biosynthetic process |
| Biological Process | GO:0001889 | liver development |
| Biological Process | GO:0007494 | midgut development |
| Biological Process | GO:1903038 | negative regulation of leukocyte cell-cell adhesion |
| Biological Process | GO:0045429 | positive regulation of nitric oxide biosynthetic process |
| Biological Process | GO:0032355 | response to estradiol |
| Biological Process | GO:0060416 | response to growth hormone |
| Biological Process | GO:0010046 | response to mycotoxin |
| Biological Process | GO:0007584 | response to nutrient |
| Biological Process | GO:0009410 | response to xenobiotic stimulus |
| Biological Process | GO:0010043 | response to zinc ion |
| Biological Process | GO:0000050 | urea cycle |
Reference
[1] Yang D, Yin J, Shan L, Yi X, Zhang W et al.. Identification of lysine-lactylated substrates in gastric cancer cells.. iScience 25(7):104630. 2022 Jul 15. PMID: 35800753.
[2] Yang Z, Yan C, Ma J, Peng P, Ren X et al.. Lactylome analysis suggests lactylation-dependent mechanisms of metabolic adaptation in hepatocellular carcinoma.. Nat Metab 5(1):61-79. 2023 Jan. PMID: 36593272.
[3] Hong H, Chen X, Wang H, Gu X, Yuan Y et al.. Global profiling of protein lysine lactylation and potential target modified protein analysis in hepatocellular carcinoma.. Proteomics 23(9):e2200432. 2023 May. PMID: 36625413.
[4] He C, Zhang J, Bai X, Lu C, Zhang K. Lysine lactylation-based insight to understanding the characterization of cervical cancer.. Biochim Biophys Acta Mol Basis Dis 1870(7):167356. 2024 Oct. PMID: 39025375.