Search Results
Overview
| Uniprot ID | P01024 |
|---|---|
| Protein Name | Complement C3 |
| Gene Name | C3 |
| Organism | Homo sapiens |
Kla Sites from experimental identification
| Position | Flanking peptide |
|---|---|
| 104 | KSEKGRNKFVTVQAT |
| 1050 | QGALELIKKGYTQQL |
| 1155 | LISLQEAKDICEEQV |
| 1203 | LAQMGRLKGPLLNKF |
| 1209 | LKGPLLNKFLTTAKD |
| 1215 | NKFLTTAKDKNRWED |
| 1353 | TMYHAKAKDQLTCNK |
| 1364 | TCNKFDLKVTIKPAP |
| 1368 | FDLKVTIKPAPETEK |
| 1431 | GVDRYISKYELDKAF |
| 155 | RIFTVNHKLLPVGRT |
| 305 | GEVVLSRKVLLDGVQ |
| 359 | PYQIHFTKTPKYFKP |
| 418 | INTHPSQKPLSITVR |
| 428 | SITVRTKKQELSEAE |
| 486 | MDRAHEAKIRYYTYL |
| 497 | YTYLIMNKGRLLKAG |
| 556 | DSVWVDVKDSCVGSL |
| 566 | CVGSLVVKSGQSEDR |
| 584 | PGQQMTLKIEGDHGA |
| 615 | KNKLTQSKIWDVVEK |
| 622 | KIWDVVEKADIGCTP |
| 633 | GCTPGSGKDYAGVFS |
| 66 | VHDFPGKKLVLSSEK |
| 678 | RSVQLTEKRMDKVGK |
| 722 | SLGEACKKVFLDCCN |
| 861 | YRQNQELKVRVELLH |
| 879 | FCSLATTKRRHQQTV |
Function
Precursor of non-enzymatic components of the classical, alternative, lectin and GZMK complement pathways, which consist in a cascade of proteins that leads to phagocytosis and breakdown of pathogens and signaling that strengthens the adaptive immune system
Protein Sequence
Gene Ontology
| Classification | GO ID | Description |
|---|---|---|
| Cellular Component | GO:0035578 | azurophil granule lumen |
| Cellular Component | GO:0072562 | blood microparticle |
| Cellular Component | GO:0009986 | cell surface |
| Cellular Component | GO:0005788 | endoplasmic reticulum lumen |
| Cellular Component | GO:0070062 | extracellular exosome |
| Cellular Component | GO:0005576 | extracellular region |
| Cellular Component | GO:0005615 | extracellular space |
| Cellular Component | GO:0005886 | plasma membrane |
| Cellular Component | GO:0032991 | protein-containing complex |
| Cellular Component | GO:0034774 | secretory granule lumen |
| Molecular Function | GO:0031715 | C5L2 anaphylatoxin chemotactic receptor binding |
| Molecular Function | GO:0004866 | endopeptidase inhibitor activity |
| Molecular Function | GO:0048018 | receptor ligand activity |
| Molecular Function | GO:0005102 | signaling receptor binding |
| Biological Process | GO:0097242 | amyloid-beta clearance |
| Biological Process | GO:0042113 | B cell activation |
| Biological Process | GO:0006956 | complement activation |
| Biological Process | GO:0006957 | complement activation, alternative pathway |
| Biological Process | GO:0006958 | complement activation, classical pathway |
| Biological Process | GO:0160257 | complement activation, GZMK pathway |
| Biological Process | GO:0002430 | complement receptor mediated signaling pathway |
| Biological Process | GO:0150062 | complement-mediated synapse pruning |
| Biological Process | GO:0006631 | fatty acid metabolic process |
| Biological Process | GO:0007186 | G protein-coupled receptor signaling pathway |
| Biological Process | GO:0006955 | immune response |
| Biological Process | GO:0006954 | inflammatory response |
| Biological Process | GO:0016322 | neuron remodeling |
| Biological Process | GO:0001970 | positive regulation of activation of membrane attack complex |
| Biological Process | GO:0045766 | positive regulation of angiogenesis |
| Biological Process | GO:2000427 | positive regulation of apoptotic cell clearance |
| Biological Process | GO:0010828 | positive regulation of D-glucose transmembrane transport |
| Biological Process | GO:0045745 | positive regulation of G protein-coupled receptor signaling pathway |
| Biological Process | GO:0010884 | positive regulation of lipid storage |
| Biological Process | GO:0060100 | positive regulation of phagocytosis, engulfment |
| Biological Process | GO:0001934 | positive regulation of protein phosphorylation |
| Biological Process | GO:0048260 | positive regulation of receptor-mediated endocytosis |
| Biological Process | GO:0010575 | positive regulation of vascular endothelial growth factor production |
| Biological Process | GO:0010866 | regulation of triglyceride biosynthetic process |
| Biological Process | GO:0007165 | signal transduction |
| Biological Process | GO:0150064 | vertebrate eye-specific patterning |
Reference
[1] 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.
[2] 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.
[3] Lin Y, Chen M, Wang D, Yu Y, Chen R et al.. Multi-Proteomic Analysis Reveals the Effect of Protein Lactylation on Matrix and Cholesterol Metabolism in Tendinopathy.. J Proteome Res 22(6):1712-1722. 2023 Jun 2. PMID: 37159428.