gene

MAPK

Entity Detail — Knowledge Graph Node

Understanding Entity Pages

This page aggregates everything SciDEX knows about MAPK: its mechanistic relationships (Knowledge Graph edges), hypotheses targeting it, analyses mentioning it, and supporting scientific papers. The interactive graph below shows its immediate neighbors. All content is AI-synthesized from peer-reviewed literature.

5693Connections
1Hypotheses
9Analyses
50Outgoing
50Incoming
0Experiments
14Debates

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🧬 Gene Info
Gene SymbolMAPK
Synaptic plasticityERK activation is required for long-term potentiation (LTP) and memory consolidation through phosphorylation of CREB, Elk-1, and MSK1 transcription factors. [@thomas2004]
Neuronal survivalERK phosphorylates and inactivates the pro-apoptotic BCL-2 family member BAD, promotes expression of anti-apoptotic proteins, and activates the RSK→CREB survival pathway
Neurite outgrowthSustained ERK activation drives neuronal differentiation through transcriptional programs distinct from those activated by transient ERK signals
Neuroinflammationp38α drives transcription and stabilization of pro-inflammatory cytokine mRNAs in microglia. It is essential for NF-κB-dependent transcription of IL-6, TNF-α, IL-1β, and iNOS. [@lee2017]
Tau phosphorylationJNK phosphorylates tau at multiple epitopes and promotes neurofibrillary tangle formation
Synaptic dysfunctionp38 activation in dendritic spines promotes AMPA receptor endocytosis and long-term depression (LTD), contributing to synaptic weakening
Microglial activationp38α is the dominant isoform mediating classical (M1) microglial activation, phagocytosis, and cytokine production
Axonal degenerationThe DLK→MKK4→JNK pathway is a master regulator of Wallerian degeneration and axonal injury signaling
APP processingJNK activation increases APP phosphorylation at Thr668, promoting amyloidogenic processing and Aβ production
JNK in dopaminergic deathJNK activation by oxidative stress (6-OHDA, MPTP) and LRRK2 gain-of-function mutations triggers c-Jun-dependent apoptosis in substantia nigra pars compacta neurons
ERK in neuroprotectionGDNF and BDNF signaling through ERK is neuroprotective for dopaminergic neurons; loss of ERK signaling contributes to neuronal vulnerability
p38 in motor neuronsp38 activation is an early event in SOD1-G93A mouse motor neurons, preceding symptom onset. p38 promotes phosphorylation of neurofilaments (NEFL, NEFH), disrupting axonal transport. [@dewil2007]
ASK1-p38 axisApoptosis signal-regulating kinase 1 (ASK1) is activated by oxidative stress and mutant SOD1, triggering the p38 and JNK cascades in motor neurons
DLK-JNK in axonal degenerationThe dual leucine zipper kinase (DLK) → MKK4 → JNK pathway drives axonal degeneration in ALS models; DLK inhibition prolongs survival in SOD1 mutant mice
Associated DiseasesAging, Als, Alzheimer, Alzheimer's disease
Known Drugs/Compounds116B, ANTIOXIDANTS, berberine, BRAF inhibitors, CHOLIX, CSA
InteractionsACAT1, ACHE, Actin, AD, ADAM10, ADORA2A
KG Connections3288 knowledge graph edges
DatabasesGeneCardsUniProtNCBI GeneHPASTRING

Wiki Pages (21)

Knowledge base pages for this entity

Canonical Page

MAPK Signaling Pathways in Neurodegeneration

mechanism · 1665 words

MAPK9 Gene

gene · 3305 words

MAPK/ERK Signaling Pathway in Neurodegeneration

mechanism · 3210 words

JNK/p38 MAPK Signaling Pathway in Neurodegeneration

mechanism · 2736 words

JNK/p38 MAPK Inhibitor Companies for Parkinson's Disease

company · 2217 words

MAPK4 Gene

gene · 1718 words

Pathway Diagram

graph TD
    MAPK["MAPK"]
    Neurodegeneration{"Neurodegeneration"}
    MAPK -->|"involved_in"| Neurodegeneration
    mTOR(["mTOR"])
    MAPK -->|"regulates"| mTOR
    mitophagy["mitophagy"]
    MAPK -->|"regulates"| mitophagy
    type_2_diabetes_mellitus{"type 2 diabetes mellitus"}
    MAPK -->|"associated_with"| type_2_diabetes_mellitus
    Alzheimer_s_disease{"Alzheimer's disease"}
    MAPK -->|"associated_with"| Alzheimer_s_disease
    STAT3(["STAT3"])
    MAPK -->|"activates"| STAT3
    LPS["["LPS"]]
    LPS -->|"activates"| MAPK
    gallic_acid["["gallic acid"]]
    gallic_acid -.->|"inhibits"| MAPK
    paeoniflorin["["paeoniflorin"]]
    paeoniflorin -.->|"inhibits"| MAPK
    ginseng_root_extract["["ginseng root extract"]]
    ginseng_root_extract -.->|"inhibits"| MAPK
    style MAPK fill:#1a3a4a,stroke:#ce93d8,stroke-width:3px,color:#e0e0e0

Outgoing (2006)

TargetRelationTypeStr
gastric cancerassociated_withdisease0.95
oxidative stress responseparticipates_inpathway0.90
Senescent Myeloid Cellscausescell_type0.90
cell migrationregulatesprocess0.90
colitis-associated colorectal cancerassociated_withdisease0.90

Incoming (3687)

SourceRelationTypeStr
NF-ΚBinhibitsgene1.00
P38inhibitsgene1.00
ERKinhibitsgene1.00
RASactivatesgene1.00
CANCERactivatesgene1.00

Targeting Hypotheses (1)

Hypotheses where this entity is a therapeutic target

HypothesisScoreDiseaseAnalysis
DLK MAPK Pathway Inhibition to Block Tau-Induced Neurotoxici 0.634 neurodegeneration Should microtubule-stabilizing drugs be

Mentioning Analyses (9)

Scientific analyses that reference this entity

Neuroinflammation and microglial priming in early AD

neurodegeneration | 2026-04-04 | 7 hypotheses Top: 0.710

Tau propagation mechanisms and therapeutic interception points

neurodegeneration | 2026-04-04 | 15 hypotheses Top: 0.814

SEA-AD Single-Cell Analysis: Cell-Type Vulnerability in Alzheimer's Disease

neurodegeneration | 2026-04-04 | 5 hypotheses Top: 0.640

Gene expression changes in aging mouse brain predicting neurodegenerative vulner

neurodegeneration | 2026-04-03 | 42 hypotheses Top: 0.910

Circuit-level neural dynamics in neurodegeneration

neuroscience | 2026-04-03 | 66 hypotheses Top: 1.000

Experiments (0)

Experimental studies targeting or related to this entity

ExperimentTypeDiseaseScoreFeasibilityModelStatusEst. Cost
No experiments found

Related Papers (0)

Scientific publications cited in analyses involving this entity

Title & PMIDAuthorsJournalYearCitations
No papers found

Debates (14)

Multi-agent debates referencing this entity

Hypothesis debate: Closed-loop optogenetic targeting PV interneurons to restore

closed · Rounds: 4 · Score: 0.00 · 2026-04-26

Hypothesis debate: Closed-loop transcranial focused ultrasound targeting EC-II S

closed · Rounds: 4 · Score: 0.00 · 2026-04-26

Hypothesis debate: Closed-loop transcranial focused ultrasound with 40Hz gamma e

closed · Rounds: 4 · Score: 0.00 · 2026-04-26

Investigate prion-like spreading of tau pathology through connected brain region

closed · Rounds: 4 · Score: 0.90 · 2026-04-12

How does microglial priming contribute to early Alzheimer's disease pathology? F

closed · Rounds: 4 · Score: 0.80 · 2026-04-12

Microglia activate astrocytes via IL-1alpha/TNF/C1q, and reactive astrocytes fee

closed · Rounds: 4 · Score: 0.90 · 2026-04-06

Can speech, gait, retinal imaging, sleep, and smartphone data detect neurodegene

closed · Rounds: 4 · Score: 0.95 · 2026-04-06

Neuroinflammation and microglial priming in early AD

closed · Rounds: 3 · Score: 0.95 · 2026-04-04

Tau propagation mechanisms and therapeutic interception points

closed · Rounds: 3 · Score: 0.95 · 2026-04-04

SEA-AD Single-Cell Analysis: Cell-Type Vulnerability in Alzheimer's Disease

closed · Rounds: 4 · Score: 0.88 · 2026-04-04

Related Research

Hypotheses and analyses mentioning MAPK in their description or question text

No additional research found