Overview
| Uniprot ID | P28482 |
| Protein Name | Mitogen-activated protein kinase 1 |
| Gene Name | MAPK1 |
| Organism | Homo sapiens |
Kla Sites from experimental identification
| Position |
Flanking peptide |
| 138 |
YQILRGLKYIHSANV |
Function
Serine/threonine kinase which acts as an essential component of the MAP kinase signal transduction pathway. MAPK1/ERK2 and MAPK3/ERK1 are the 2 MAPKs which play an important role in the MAPK/ERK cascade. They participate also in a signaling cascade initiated by activated KIT and KITLG/SCF. Depending on the cellular context, the MAPK/ERK cascade mediates diverse biological functions such as cell growth, adhesion, survival and differentiation through the regulation of transcription, translation, cytoskeletal rearrangements. The MAPK/ERK cascade also plays a role in initiation and regulation of meiosis, mitosis, and postmitotic functions in differentiated cells by phosphorylating a number of transcription factors. About 160 substrates have already been discovered for ERKs. Many of these substrates are localized in the nucleus, and seem to participate in the regulation of transcription upon stimulation. However, other substrates are found in the cytosol as well as in other cellular organelles, and those are responsible for processes such as translation, mitosis and apoptosis. Moreover, the MAPK/ERK cascade is also involved in the regulation of the endosomal dynamics, including lysosome processing and endosome cycling through the perinuclear recycling compartment (PNRC); as well as in the fragmentation of the Golgi apparatus during mitosis. The substrates include transcription factors (such as ATF2, BCL6, ELK1, ERF, FOS, HSF4 or SPZ1), cytoskeletal elements (such as CANX, CTTN, GJA1, MAP2, MAPT, PXN, SORBS3 or STMN1), regulators of apoptosis (such as BAD, BTG2, CASP9, DAPK1, IER3, MCL1 or PPARG), regulators of translation (such as EIF4EBP1 and FXR1) and a variety of other signaling-related molecules (like ARHGEF2, DCC, FRS2, GLI1 or GRB10) (PubMed:35831023). Protein kinases (such as RAF1, RPS6KA1/RSK1, RPS6KA3/RSK2, RPS6KA2/RSK3, RPS6KA6/RSK4, SYK, MKNK1/MNK1, MKNK2/MNK2, RPS6KA5/MSK1, RPS6KA4/MSK2, MAPKAPK3 or MAPKAPK5) and phosphatases (such as DUSP1, DUSP4, DUSP6 or DUSP16) are other substrates which enable the propagation the MAPK/ERK signal to additional cytosolic and nuclear targets, thereby extending the specificity of the cascade. Mediates phosphorylation of TPR in response to EGF stimulation. May play a role in the spindle assembly checkpoint. Phosphorylates PML and promotes its interaction with PIN1, leading to PML degradation. Phosphorylates CDK2AP2 (By similarity). Phosphorylates phosphoglycerate kinase PGK1 under hypoxic conditions to promote its targeting to the mitochondrion and suppress the formation of acetyl-coenzyme A from pyruvate (PubMed:26942675). Phosphorylates GJA1 at 'Ser-279' and 'Ser-282' resulting in an increase in GJA1 ubiquitination and ultimately lysosomal degradation (By similarity). Acts as a positive regulator of smoothened signaling by mediating phosphorylation of GLI1 in response to smoothened activation, promoting its dissociation from SUFU inhibitor and translocation to the nucleus (PubMed:35831023)
Protein Sequence
10
MAAAAAAGAG
20
PEMVRGQVFD
30
VGPRYTNLSY
40
IGEGAYGMVC
50
SAYDNVNKVR
60
VAIKKISPFE
70
HQTYCQRTLR
80
EIKILLRFRH
90
ENIIGINDII
100
RAPTIEQMKD
110
VYIVQDLMET
120
DLYKLLKTQH
130
LSNDHICYFL
140
YQILRGLKYI
150
HSANVLHRDL
160
KPSNLLLNTT
170
CDLKICDFGL
180
ARVADPDHDH
190
TGFLTEYVAT
200
RWYRAPEIML
210
NSKGYTKSID
220
IWSVGCILAE
230
MLSNRPIFPG
240
KHYLDQLNHI
250
LGILGSPSQE
260
DLNCIINLKA
270
RNYLLSLPHK
280
NKVPWNRLFP
290
NADSKALDLL
300
DKMLTFNPHK
310
RIEVEQALAH
320
PYLEQYYDPS
330
DEPIAEAPFK
340
FDMELDDLPK
350
EKLKELIFEE
360
TARFQPGYRS
Gene Ontology
| Classification |
GO ID |
Description |
| Cellular Component |
GO:0035578 |
azurophil granule lumen |
| Cellular Component |
GO:0005901 |
caveola |
| Cellular Component |
GO:0005813 |
centrosome |
| Cellular Component |
GO:0005737 |
cytoplasm |
| Cellular Component |
GO:0005856 |
cytoskeleton |
| Cellular Component |
GO:0005829 |
cytosol |
| Cellular Component |
GO:0005769 |
early endosome |
| Cellular Component |
GO:0005788 |
endoplasmic reticulum lumen |
| Cellular Component |
GO:0005576 |
extracellular region |
| Cellular Component |
GO:1904813 |
ficolin-1-rich granule lumen |
| Cellular Component |
GO:0005925 |
focal adhesion |
| Cellular Component |
GO:0005794 |
Golgi apparatus |
| Cellular Component |
GO:0005770 |
late endosome |
| Cellular Component |
GO:0005739 |
mitochondrion |
| Cellular Component |
GO:0072686 |
mitotic spindle |
| Cellular Component |
GO:0005654 |
nucleoplasm |
| Cellular Component |
GO:0005634 |
nucleus |
| Cellular Component |
GO:0005886 |
plasma membrane |
| Cellular Component |
GO:0031143 |
pseudopodium |
| Cellular Component |
GO:0045202 |
synapse |
| Molecular Function |
GO:0005524 |
ATP binding |
| Molecular Function |
GO:0003677 |
DNA binding |
| Molecular Function |
GO:0042802 |
identical protein binding |
| Molecular Function |
GO:0004707 |
MAP kinase activity |
| Molecular Function |
GO:0019902 |
phosphatase binding |
| Molecular Function |
GO:0001784 |
phosphotyrosine residue binding |
| Molecular Function |
GO:0106310 |
protein serine kinase activity |
| Molecular Function |
GO:0004674 |
protein serine/threonine kinase activity |
| Molecular Function |
GO:0008353 |
RNA polymerase II CTD heptapeptide repeat kinase activity |
| Biological Process |
GO:0006915 |
apoptotic process |
| Biological Process |
GO:0072584 |
caveolin-mediated endocytosis |
| Biological Process |
GO:0007166 |
cell surface receptor signaling pathway |
| Biological Process |
GO:0034198 |
cellular response to amino acid starvation |
| Biological Process |
GO:0007268 |
chemical synaptic transmission |
| Biological Process |
GO:0070098 |
chemokine-mediated signaling pathway |
| Biological Process |
GO:0006935 |
chemotaxis |
| Biological Process |
GO:0006351 |
DNA-templated transcription |
| Biological Process |
GO:0007173 |
epidermal growth factor receptor signaling pathway |
| Biological Process |
GO:0038127 |
ERBB signaling pathway |
| Biological Process |
GO:0038133 |
ERBB2-ERBB3 signaling pathway |
| Biological Process |
GO:0070371 |
ERK1 and ERK2 cascade |
| Biological Process |
GO:0008286 |
insulin receptor signaling pathway |
| Biological Process |
GO:0048009 |
insulin-like growth factor receptor signaling pathway |
| Biological Process |
GO:0061514 |
interleukin-34-mediated signaling pathway |
| Biological Process |
GO:0035556 |
intracellular signal transduction |
| Biological Process |
GO:0007611 |
learning or memory |
| Biological Process |
GO:0000165 |
MAPK cascade |
| Biological Process |
GO:0042552 |
myelination |
| Biological Process |
GO:0045542 |
positive regulation of cholesterol biosynthetic process |
| Biological Process |
GO:0010759 |
positive regulation of macrophage chemotaxis |
| Biological Process |
GO:0120041 |
positive regulation of macrophage proliferation |
| Biological Process |
GO:0150078 |
positive regulation of neuroinflammatory response |
| Biological Process |
GO:0010800 |
positive regulation of peptidyl-threonine phosphorylation |
| Biological Process |
GO:0032206 |
positive regulation of telomere maintenance |
| Biological Process |
GO:0006468 |
protein phosphorylation |
| Biological Process |
GO:0051493 |
regulation of cytoskeleton organization |
| Biological Process |
GO:2000641 |
regulation of early endosome to late endosome transport |
| Biological Process |
GO:0090170 |
regulation of Golgi inheritance |
| Biological Process |
GO:0032872 |
regulation of stress-activated MAPK cascade |
| Biological Process |
GO:0070849 |
response to epidermal growth factor |
| Biological Process |
GO:0035094 |
response to nicotine |
| Biological Process |
GO:0014044 |
Schwann cell development |
| Biological Process |
GO:0007165 |
signal transduction |
| Biological Process |
GO:0051403 |
stress-activated MAPK cascade |
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.