Target intelligence / Profile preview

Tumor protein p53 (TP53) and Mitogen-activated protein kinase 1 (MAPK1) (TP53 and MAPK1)

Target
TP53 and MAPK1
Molecular classification
Transcription factor, Enzyme, Kinase, Serine/threonine protein kinase
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Overview

Tumor protein p53 (TP53) and Mitogen-activated protein kinase 1 (MAPK1) are two distinct proteins that play central, yet different, roles in cellular regulation and cancer progression. TP53 is a transcription factor known as the guardian of the genome, responsible for inducing cell cycle arrest, DNA repair, or apoptosis in response to cellular stress (Vogelstein et al., 2000). In contrast, MAPK1, also known as ERK2, is a protein kinase within the MAPK/ERK signaling pathway that promotes cell growth, survival, and differentiation in response to growth factors (Shaul & Seger, 2007). While both are significant therapeutic targets, they are not a single molecular complex; TP53 is frequently targeted to restore tumor suppression in p53-wildtype cancers, whereas MAPK1 is targeted to inhibit oncogenic signaling in MAPK-driven malignancies (Khoo et al., 2014). Mutations in TP53 are found in over half of all human cancers, making it a high-priority target for MDM2-p53 interaction inhibitors (Donehower et al., 2019). MAPK1 inhibition is often explored as a strategy to overcome resistance to upstream BRAF or MEK inhibitors in various solid tumors (Sullivan & Flaherty, 2013).

Other names
p53Antigen NY-CO-13Phosphoprotein p53Tumor suppressor p53BCC7LFS1TRP53ERK2Extracellular signal-regulated kinase 2MAP kinase 1MAPK 2p42-MAPKPRKM1PRKM2ERT1
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Mechanism of action

TP53 is targeted by MDM2-p53 interaction inhibitors to prevent p53 degradation and restore its tumor-suppressive activity; MAPK1 is targeted by ERK inhibitors to block downstream proliferative signaling in the RAS-RAF-MEK-ERK pathway.

03

Biological functions

Cell cycleApoptosisSignal transductionCell proliferationDNA repairCell differentiation
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Disease associations

Cancer
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Safety considerations

ThrombocytopeniaNeutropeniaGastrointestinal toxicityDermatologic toxicity (rash)FatiguePotential for compensatory pathway activation and drug resistance
06

Interacting drugs

Idasanutlin

6 more in the full profile.

07

Biomarkers

TP53 mutation statusMDM2 amplificationERK phosphorylation (p-ERK)KRAS mutation statusBRAF mutation status

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