concept

SELECTIVE AUTOPHAGY

Entity Detail — Knowledge Graph Node

Understanding Entity Pages

This page aggregates everything SciDEX knows about SELECTIVE AUTOPHAGY: 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.

180Connections
7Hypotheses
4Analyses
32Outgoing
50Incoming
0Experiments
4Debates

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💡 Concept Info
NameSELECTIVE AUTOPHAGY
Key Genes/Proteinsamyotrophic lateral sclerosis, ANXA1, ATG5, BAG3, BCL2, BECN1
Related Diseasescancer, disease
Related PathwaysChaperone

Pathway Diagram

graph TD
    SELECTIVE_AUTOPHAGY["SELECTIVE AUTOPHAGY"]
    style SELECTIVE_AUTOPHAGY fill:#1a237e,stroke:#4fc3f7,stroke-width:3px
    SELECTIVE_AUTOPHAGY -->|"targets"| PEDV_N_protein([PEDV N protein])
    SELECTIVE_AUTOPHAGY -.->|"degrades"| PEDV_N([PEDV N])
    SELECTIVE_AUTOPHAGY -.->|"protects against"| Neurodegeneration["Neurodegeneration"]
    SELECTIVE_AUTOPHAGY -.->|"inhibits"| STAT2([STAT2])
    SELECTIVE_AUTOPHAGY -->|"component_of"| Mitophagy["Mitophagy"]
    SELECTIVE_AUTOPHAGY -->|"component_of"| Xenophagy["Xenophagy"]
    SELECTIVE_AUTOPHAGY -->|"component_of"| Aggrephagy["Aggrephagy"]
    SELECTIVE_AUTOPHAGY -->|"involved_in"| Cancer["Cancer"]
    SELECTIVE_AUTOPHAGY -->|"involved_in"| Mitochondria["/Mitochondria/"]
    SELECTIVE_AUTOPHAGY -->|"mediates"| Protein_Degradation["Protein Degradation"]
    ULK1([ULK1]) -->|"involved_in"| SELECTIVE_AUTOPHAGY
    SQSTM1([SQSTM1]) -->|"participates in"| SELECTIVE_AUTOPHAGY
    SQSTM1G427R([SQSTM1G427R]) -.->|"inhibits"| SELECTIVE_AUTOPHAGY
    TOLLIP([TOLLIP]) -->|"participates in"| SELECTIVE_AUTOPHAGY
    CALCOCO2([CALCOCO2]) -->|"participates in"| SELECTIVE_AUTOPHAGY
    Parkin([Parkin]) -->|"activates"| SELECTIVE_AUTOPHAGY
    PRKN([PRKN]) -->|"activates"| SELECTIVE_AUTOPHAGY
    NDP52([NDP52]) -->|"participates in"| SELECTIVE_AUTOPHAGY
    Ubiquitin_Phosphorylation["Ubiquitin Phosphorylation"] -->|"mediates"| SELECTIVE_AUTOPHAGY

Outgoing (32)

TargetRelationTypeStr
Neurodegenerationprotects_againstdisease0.95
Pedv N Proteinmediatesprotein0.95
Cancerassociated_withdisease0.95
neurodegenerationprotects_againstdisease0.95
PEDV Ndegradesprotein0.95

Incoming (148)

SourceRelationTypeStr
SQSTM1mediatesgene0.95
ULK1involved_inprotein0.95
Mitochondriasubstrate_oforganelle0.90
Ubiquitin Phosphorylationmediatesmechanism0.90
SQSTM1involved_inprotein0.90

Targeting Hypotheses (7)

Hypotheses where this entity is a therapeutic target

HypothesisScoreDiseaseAnalysis
J-protein co-chaperone system mediates selective autophagy t 0.831 protein-biochemistry Do chaperones selectively recognize path
TBK1-OPTN-p62 selective autophagy failure across ALS, FTD, a 0.776 multi Cross-disease neurodegeneration mechanis
CHIP-mediated K63-linked ubiquitination redirects oligomeric 0.380 protein-biochemistry Do chaperones selectively recognize path
Chaperone-Autophagy Coupling Prevents Aggregate Persistence 0.380 protein-folding Can chaperone enhancement approaches ove
Chaperone-Autophagy Coupling Prevents Aggregate Persistence 0.380 protein-folding Can chaperone enhancement approaches ove
Synaptic-Selective Autophagy Receptor Expression to Bypass A 0.370 proteomics Quantitative proteomics of the aging syn
Pharmacological Chaperone-Mediated Selective Autophagy 0.000 - GBA-Synuclein Loop Therapeutics for PD

Mentioning Analyses (4)

Scientific analyses that reference this entity

How do non-cell autonomous effects of autophagy dysfunction contribute to ALS pa

neurodegeneration | 2026-04-08 | 7 hypotheses Top: 0.390

What determines organelle-specific autophagy selectivity in neurodegenerative di

neurodegeneration | 2026-04-08 | 2 hypotheses Top: 0.580

What determines the spatial organization of autophagy receptors at stress granul

neurodegeneration | 2026-04-08 | 5 hypotheses Top: 0.633

How do different organelle-specific autophagy pathways coordinate during neurode

neurodegeneration | 2026-04-07 | 7 hypotheses Top: 0.772

Experiments (0)

Experimental studies targeting or related to this entity

ExperimentTypeDiseaseScoreFeasibilityModelStatusEst. Cost
No experiments found

Related Papers (3)

Scientific publications cited in analyses involving this entity

Title & PMIDAuthorsJournalYearCitations
PINK1/PARKIN signalling in neurodegeneration and neuroinflammation. [PMID:33168089] Quinn PMJ, Moreira PI, Ambrósio AF, Alve Acta neuropathologica communic 2020 0
Haploinsufficiency of TBK1 causes familial ALS and fronto-temporal dementia. [PMID:25803835] Unknown Nature neuroscience 2015 0
The roles of PINK1, parkin, and mitochondrial fidelity in Parkinson's disease. [PMID:25611507] ["Pickrell Alicia M", "Youle Richard J"] Neuron 2015 0

Debates (4)

Multi-agent debates referencing this entity

The abstract mentions multiple organelles synchronously present structural deran

closed · Rounds: 4 · Score: 0.80 · 2026-04-21

SQSTM1 and CALCOCO2 specifically localize to SG periphery rather than throughout

closed · Rounds: 4 · Score: 0.69 · 2026-04-21

The review covers various organelle-specific autophagy types but doesn't address

closed · Rounds: 4 · Score: 0.66 · 2026-04-21

How do non-cell autonomous effects of autophagy dysfunction contribute to ALS pa

closed · Rounds: 4 · Score: 0.94 · 2026-04-10

Related Research

Hypotheses and analyses mentioning SELECTIVE AUTOPHAGY in their description or question text

Synaptic-Selective Autophagy Receptor Expression to Bypass Axonal Lysosome Defic

Score: 0.370 · proteomics · 2026-04-25

Synaptic-Selective Autophagy Receptor Expression to Bypass Axonal Lysosome Deficiency

Pharmacological Chaperone-Mediated Selective Autophagy

Score: 0.000 · unknown disease · 2026-04-28

Engineering selective autophagy receptors using ambroxol derivatives conjugated to AUTACs for targeted degradation of pa