ID: hypothesis-h-seaad-fa5ea82d
Hypothesis

APOE Isoform Expression Across Glial Subtypes

APOE Isoform Expression Across Glial Subtypes starts from the claim that modulating APOE within the disease context of Alzheimer's Disease can redirect a disease-relevant process.
🧬 APOE🩺 alzheimers🎯 Composite 74%💱 $0.60▼21.8%proposed
neurodegeneration
EvidencePending (0%)📖 30 cit🗣 3 debates 35 support 7 oppose
✓ All Quality Gates Passed
Mechanistic 0.60 (15%) Evidence 0.55 (15%) Novelty 0.60 (12%) Feasibility 0.55 (12%) Impact 0.60 (12%) Druggability 0.50 (10%) Safety 0.45 (8%) Competition 0.55 (6%) Data Avail. 0.60 (5%) Reproducible 0.50 (5%) KG Connect 0.94 (8%) 0.743 composite
🏆 ChallengeSolve: Autophagy-lysosome pathway convergence across neurodegenerative diseases$147K →

🧪 Overview

Mechanistic Overview


APOE Isoform Expression Across Glial Subtypes starts from the claim that modulating APOE within the disease context of Alzheimer's Disease can redirect a disease-relevant process. The original description reads: "APOE (Apolipoprotein E) shows significant upregulation (log2FC = +1.8) in the SEA-AD dataset, with expression patterns varying dramatically across astrocyte and microglial subtypes in the middle temporal gyrus. The APOE4 allele is the strongest genetic risk factor for late-onset Alzheimer's disease, carried by approximately 25% of the population and present in over 60% of AD patients. The SEA-AD single-cell data enables dissecting APOE isoform-specific effects at unprecedented cellular resolution, revealing cell-type-specific mechanisms that explain why a single gene variant can produce such diverse pathological consequences.

...

🧬 Mechanism

🧬 Curated Mechanism Pathway

Curated pathway from expert analysis

graph TD
    subgraph "APOE Lipid Transport"
        APOE["APOE"] -->|"lipidation"| HDL["HDL-like Particles"]
        HDL -->|"cholesterol delivery"| LRP1["LRP1 Receptor"]
        LRP1 -->|"endocytosis"| NEUR["Neuronal Uptake"]
        NEUR -->|"membrane repair"| SYNAPSE["Synaptic Maintenance"]
    end
    
    subgraph "APOE4 Pathology"
        APOE4["APOE4 Isoform"] -->|"poor lipidation"| LDROP["Lipid Droplet<br/>Accumulation"]
        APOE4 -->|"impaired clearance"| AB_ACC["Amyloid-beta<br/>Accumulation"]
        APOE4 -->|"reduced transport"| CHOL_DEF["Cholesterol<br/>Deficit in Neurons"]
        LDROP -->|"astrocyte stress"| REACT["Reactive Astrocytes"]
    end
    
    subgraph "Cell-Type Expression"
        AST["Astrocytes<br/>(highest APOE)"] -->|"lipid efflux"| HDL
        MIC["Microglia<br/>(moderate APOE)"] -->|"phagocytosis"| AB_ACC
        NEU["Neurons<br/>(low APOE)"] -->|"self-supply"| SYNAPSE
    end
    
    style APOE fill:#FF6D00,color:#fff
    style APOE4 fill:#C62828,color:#fff
    style AST fill:#2E7D32,color:#fff

⚖️ Evidence

⚖️ Evidence Matrix35 supports7 contradicts
Supports
APOE4 is the strongest genetic risk factor for late-onset AD
Science1993PMID:8346443strong
Abstract
The APOE epsilon-4 allele is associated with increased risk and earlier onset of Alzheimer's disease.
Supports
APOE4 structure correctors show promise in AD models
Nat Struct Mol Biol2022PMID:35679413medium
Abstract
Small molecule correctors of APOE4 structure rescue lipid metabolism and reduce tau pathology.
Supports
Apolipoprotein E isoform-dependent microglia migration.
FASEB J2011PMID:21385991medium
Abstract
Complement component C5a and ATP are potent effectors of microglial movement and are increased in diverse neurodegenerative diseases and at sites of injury. Apolipoprotein E (apoE) influences microglial function, and different human apoE isoforms confer variable risk for development of neurodegenera
Supports
APOE in Alzheimer's disease and neurodegeneration.
Neurobiol Dis2020PMID:32209402medium
Supports
Alzheimer Disease: An Update on Pathobiology and Treatment Strategies.
Cell2019PMID:31564456medium
Abstract
Alzheimer disease (AD) is a heterogeneous disease with a complex pathobiology. The presence of extracellular β-amyloid deposition as neuritic plaques and intracellular accumulation of hyperphosphorylated tau as neurofibrillary tangles remains the primary neuropathologic criteria for AD diagnosis. However, a number of recent fundamental discoveries highlight important pathological roles for other critical cellular and molecular processes. Despite this, no disease-modifying treatment currently exi
Supports
Isoform- and cell-state-specific lipidation of ApoE in astrocytes.
Cell Rep2022PMID:35235798medium
Abstract
Apolipoprotein E transports lipids and couples metabolism between astrocytes and neurons. The E4 variant (APOE4) affects these functions and represents a genetic predisposition for Alzheimer's disease, but the molecular mechanisms remain elusive. We show that ApoE produces different types of lipoproteins via distinct lipidation pathways. ApoE forms high-density lipoprotein (HDL)-like, cholesterol-rich particles via the ATP-binding cassette transporter 1 (ABCA1), a mechanism largely unaffected by
Supports
Single-cell protein activity analysis identifies recurrence-associated renal tumor macrophages.
Cell2021PMID:34019793medium
Abstract
Clear cell renal carcinoma (ccRCC) is a heterogeneous disease with a variable post-surgical course. To assemble a comprehensive ccRCC tumor microenvironment (TME) atlas, we performed single-cell RNA sequencing (scRNA-seq) of hematopoietic and non-hematopoietic subpopulations from tumor and tumor-adjacent tissue of treatment-naive ccRCC resections. We leveraged the VIPER algorithm to quantitate single-cell protein activity and validated this approach by comparison to flow cytometry. The analysis
Supports
The APOE-R136S mutation protects against APOE4-driven Tau pathology, neurodegeneration and neuroinflammation.
Nat Neurosci2023PMID:37957317medium
Abstract
Apolipoprotein E4 (APOE4) is the strongest genetic risk factor for late-onset Alzheimer's disease (LOAD), leading to earlier age of clinical onset and exacerbating pathologies. There is a critical need to identify protective targets. Recently, a rare APOE variant, APOE3-R136S (Christchurch), was found to protect against early-onset AD in a PSEN1-E280A carrier. In this study, we sought to determine if the R136S mutation also protects against APOE4-driven effects in LOAD. We generated tauopathy mo
Supports
APOE and Alzheimer's disease: advances in genetics, pathophysiology, and therapeutic approaches.
Lancet Neurol2021PMID:33340485medium
Abstract
The APOE ε4 allele remains the strongest genetic risk factor for sporadic Alzheimer's disease and the APOE ε2 allele the strongest genetic protective factor after multiple large scale genome-wide association studies and genome-wide association meta-analyses. However, no therapies directed at APOE are currently available. Although initial studies causally linked APOE with amyloid-β peptide aggregation and clearance, over the past 5 years our understanding of APOE pathogenesis has expanded beyond
Supports
APOE gene variants in primary dyslipidemia.
Atherosclerosis2021PMID:34058468medium
Abstract
Apolipoprotein E (apoE) is a major apolipoprotein involved in lipoprotein metabolism. It is a polymorphic protein and different isoforms are associated with variations in lipid and lipoprotein levels and thus cardiovascular risk. The isoform apoE4 is associated with an increase in LDL-cholesterol levels and thus a higher cardiovascular risk compared to apoE3. Whereas, apoE2 is associated with a mild decrease in LDL-cholesterol levels. In the presence of other risk factors, apoE2 homozygotes coul
Supports
Update on genetics of familial hypercholesterolemia.
Curr Opin Lipidol2026PMID:41703706
Supports
Perioperative polygenic and APOE-based genetic risk assessment for neurocognitive disorders: a biobank study.
Br J Anaesth2026PMID:40562635
Supports
Targeting KAT8 alleviates vascular senescence by modulating the INHBA/TGF-β pathway.
Mol Ther2026PMID:41445196
Supports
Neuropsychiatric symptoms and apolipoprotein E genotypes in neurocognitive disorders.
Neural Regen Res2026PMID:40145985
Supports
Adipose Tissue Macrophage-Derived Proplatelet Basic Protein Exacerbates Psoriasis-Associated Atherosclerosis by Inducing Mitochondrial Dysfunction in Aortic Endothelial Cells.
J Invest Dermatol2026PMID:40886963
Supports
Increased genetic protection against Alzheimer's disease in centenarians.
Geroscience2026PMID:40615639
Supports
Integrative machine learning approach to risk prediction for dementia and Alzheimer's disease.
Geroscience2026PMID:40864401
Supports
Menopause, cognition, and Alzheimer's disease risk.
Curr Opin Obstet Gynecol2026PMID:41531227
Supports
Integrative multi-omics identifies a diagnostic T cell signature for cutaneous squamous cell carcinoma.
Naunyn Schmiedebergs Arch Pharmacol2026PMID:41935998
Supports
Inflammation-related miR-155-5p as an APOE ε4-modulated biomarker for amyloid pathology in mild cognitive impairment.
J Alzheimers Dis2026PMID:41930593
Supports
Trajectories of frailty, grip strength and gait speed preceding dementia: a nested case-control study.
Age Ageing2026PMID:41936045
Supports
UBE2I Alleviates Pyroptosis in Coronary Heart Disease by Promoting the SUMOylation and Degradation of NLRP3.
Immunol Invest2026PMID:41930933
Supports
Chicoric acid enhanced brain cholesterol efflux and reduced Aβ pathology via LXR-ABCA1 signaling in Alzheimer's models.
Neurotherapeutics2026PMID:41934727
Supports
Plant-Based Dietary Patterns and Risk of Alzheimer Disease and Related Dementias in the Multiethnic Cohort Study.
Neurology2026PMID:41950435
Supports
Early intervention with tirzepatide or semaglutide influences anti-atherosclerotic effects in ApoE knockout mice.
Sci Rep2026PMID:41946762
Supports
Associations between air pollution and markers of neuroinflammation, synaptic dysfunction and core Alzheimer's disease pathology vary by APOE genotype.
Neurotox Res2026PMID:41944915
Supports
Arterial compliance, assessed by PTC1 and PTC2 from radial artery pressure waveforms, and cognitive performance: The Multi-Ethnic Study of Atherosclerosis.
J Hum Hypertens2026PMID:41946821
Supports
Opposing patterns of blood-brain barrier permeability and Alzheimer's disease biomarkers across APOE genotype.
Neurol Sci2026PMID:41942760
Supports
Amyloid-related imaging abnormalities in Japanese patients with Alzheimer's disease treated with Lecanemab: A real-world study.
J Prev Alzheimers Dis2026PMID:41936348
Supports
Structural MRI phenotyping in Alzheimer's disease: Comparison of visual rating scales, volumetry, and cortical thickness in a Serbian single-centre cohort.
Biomol Biomed2026PMID:41943971
Contradicts
APOE reduction may impair beneficial lipid transport functions
Neuron2019PMID:31511426medium
Abstract
Complete APOE reduction leads to synaptic deficits, suggesting therapeutic approaches must maintain baseline function.
Contradicts
Multi-omics and experimental validation reveal the mechanism of DanxiaTiaoban decoction in treating atherosclerosis.
Phytomedicine2025PMID:40916281medium
Abstract
Atherosclerosis (AS) is a leading risk factor for cardiovascular diseases globally, characterised by the accumulation of lipids and cholesterol in arterial walls, causing vascular narrowing and sclerosis along with chronic inflammation; this leads to increased risk of heart disease and stroke, signi
Contradicts
Impairment of the blood-nerve and blood-brain barriers in apolipoprotein e knockout mice.
Exp Neurol2001PMID:11312553medium
Abstract
Apolipoprotein E (apoE) is well characterized as a plasma lipoprotein involved in lipid and cholesterol metabolism. Recent studies implicating apoE in Alzheimer's disease and successful recovery from neurological injury have stimulated much interest in the functions of apoE within the brain. To expl
Contradicts
Apolipoprotein E and Alzheimer disease: pathobiology and targeting strategies.
Nat Rev Neurol2019PMID:31367008medium
Abstract
Polymorphism in the apolipoprotein E (APOE) gene is a major genetic risk determinant of late-onset Alzheimer disease (AD), with the APOE*ε4 allele conferring an increased risk and the APOE*ε2 allele conferring a decreased risk relative to the common APOE*ε3 allele. Strong evidence from clinical and basic research suggests that a major pathway by which APOE4 increases the risk of AD is by driving earlier and more abundant amyloid pathology in the brains of APOE*ε4 carriers. The number of amyloid-
Contradicts
Apolipoprotein E and Alzheimer disease: risk, mechanisms and therapy.
Nat Rev Neurol2013PMID:23296339medium
Abstract
Apolipoprotein E (Apo-E) is a major cholesterol carrier that supports lipid transport and injury repair in the brain. APOE polymorphic alleles are the main genetic determinants of Alzheimer disease (AD) risk: individuals carrying the ε4 allele are at increased risk of AD compared with those carrying the more common ε3 allele, whereas the ε2 allele decreases risk. Presence of the APOE ε4 allele is also associated with increased risk of cerebral amyloid angiopathy and age-related cognitive decline
Contradicts
Updates in Alzheimer's disease: from basic research to diagnosis and therapies.
Transl Neurodegener2024PMID:39232848medium
Abstract
Alzheimer's disease (AD) is the most common neurodegenerative disorder, characterized pathologically by extracellular deposition of β-amyloid (Aβ) into senile plaques and intracellular accumulation of hyperphosphorylated tau (pTau) as neurofibrillary tangles. Clinically, AD patients show memory deterioration with varying cognitive dysfunctions. The exact molecular mechanisms underlying AD are still not fully understood, and there are no efficient drugs to stop or reverse the disease progression.
Contradicts
Dichlorodiphenyltrichloroethane and dichlorodiphenyldichloroethylene exposure, cognition, and cortical thickness at middle age in US Latinas (the CHAMACOS Maternal Cognition Study): a prospective c...
Lancet Planet Health2026PMID:41965237moderate
📖 Linked Papers (25)Export BibTeX ↗
Figures
Figures
Figures available at source paper (no open-access XML found).
Figures
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Figures available at source paper (no open-access XML found).
Fig. 1
Fig. 1
Age matching protocol. A The distribution of the control and AD groups by age. B Following a protocol for age-matching schemes, a major cofounding bias was ...
Fig. 2
Fig. 2
Performance of the risk factor predictive modes for AD from UKB. A Comparison of selected models’ performance by the mean of the ROC-AUC for ten different ind...
Figures
Figures
Figures available at source paper (no open-access XML found).
Figures
Figures
Figures available at source paper (no open-access XML found).
Figure 1
Figure 1
The mediating role of the apolipoprotein E gene in neurodegenerative and vascular disorders. The image illustrates the key role of the apolipoprotein E gene ( A...
Figure 2
Figure 2
Neuropsychiatric symptoms in AD and the role of the apolipoprotein E gene. AD can lead to neuropsychiatric symptoms such as apathy, agitation, aggression, depre...
Fig. 1
Fig. 1
Amyloidogenic and non-amyloidogenic APP processing pathways. a The amyloidogenic processing pathway of APP produces full-length Aβ through BACE1 and γ-secreta...
Fig. 2
Fig. 2
Mechanisms underlying Aβ accumulation and toxicities. a Common factors that promote Aβ production (left) or contribute to Aβ accumulation (right). b Experim...
Fig. 1
Fig. 1
Homozygous R136S mutation rescues APOE4-promoted Tau pathology in tauopathy mice. a , Schematic of CRISPR–Cas-9-mediated gene editing strategy to generate human...
Fig. 2
Fig. 2
Homozygous R136S mutation protects against APOE4-induced p-Tau accumulation in human neurons. a – d , Representative western blot images ( a ) and quantificatio...
Figure
Figure
Multifaceted effects of APOE in the brain and potential strategies to decrease APOE4 and increase APOE2 levels. In the healthy brain, APOE is expressed and secr...
Figures
Figures
Figures available at source paper (no open-access XML found).
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Figures available at source paper (no open-access XML found).
📙 Related Wiki Pages (15)

🏥 Translation

🧬 3D Protein Structure — APOE

🧬 PDB 2L7B Click to expand

Experimental structure from RCSB PDB | Powered by Mol*

🧠 GTEx v10 Brain ExpressionJSON

Median TPM across 13 brain regions for APOE from GTEx v10.

Substantia nigra1881 Nucleus accumbens basal ganglia1789 Caudate basal ganglia1710 Putamen basal ganglia1612 Amygdala1348 Hypothalamus1063 Anterior cingulate cortex BA24828 Cerebellum778 Hippocampus699 Frontal Cortex BA9676 Cerebellar Hemisphere658 Cortex639 Spinal cord cervical c-1603median TPM (GTEx v10)

💉 Clinical Trials (16)Relevance: 22%

0
Active
0
Completed
4,330
Total Enrolled
PHASE1
Highest Phase
ACTIVE_NOT_RECRUITING·NCT03634007
15 enrolled · 2019-01-15
Alzheimer's Disease
LX1001 (AAV-APOE2 gene therapy)
COMPLETED·NCT01780519 · Mayo Clinic
57 enrolled · 2013-01 · → 2016-09
The investigators' goal is to determine if certain tests of memory and attention, performed while sleepiness is induced by a single dose of lorazepam, can predict whether or not an individual is at ri
Alzheimer's Disease (AD)
lorazepam
COMPLETED·NCT01689246 · TauRx Therapeutics Ltd
891 enrolled · 2013-01 · → 2015-11
The purpose of this study is to determine the safety and efficacy of TRx0237 in the treatment of subjects with mild to moderate Alzheimer's Disease.
Alzheimer's Disease
TRx0237 150 mg/day TRx0237 250 mg/day Placebo
COMPLETED·NCT02167256 · Yale University
159 enrolled · 2014-12 · → 2018-02-27
AZD0530 is an inhibitor of Src and Abl family kinases1. It has been developed as treatment for malignancies because these kinases play a role in tumor invasion and proliferation. However, the Src fami
Alzheimer's Disease
AZD0530 100mg daily AZD0530 125mg daily Placebo
ENROLLING_BY_INVITATION·NCT06875739 · Fondazione Don Carlo Gnocchi Onlus
310 enrolled · 2025-02-14 · → 2026-10-01
The aim of the study is to validate a salivary test that allows for rapid and accurate objective diagnosis in the context of neurodegenerative diseases, a complex of diseases that includes Alzheimer's
Neurodegenerative Disorders Parkinson Disease Alzheimer Disease
RECRUITING·NCT03140865 · Wake Forest University Health Sciences
850 enrolled · 2014-01 · → 2030-01
Efforts to find treatments for AD have yielded only modest benefits, likely because longstanding AD pathological processes induce irreversible neurological compromise. These processes begin years befo
Alzheimer's Disease Mild Cognitive Impairment Prediabetic State
ACTIVE_NOT_RECRUITING·NCT06416072 · University of Southern California
1,000 enrolled · 2023-09-21 · → 2028-06
The APEX study is a multicenter, observational study designed to capture longitudinal follow-up of plasma biomarkers and cognitive and functional assessments on individuals who screen failed in the AH
Preclinical Alzheimer's Disease Early Preclinical Alzheimer's Disease
NAV4694
RECRUITING·NCT07402161 · IRCCS Policlinico S. Donato
250 enrolled · 2025-10-01 · → 2027-10-01
This study focuses on improving early detection of Alzheimer's disease (AD) in patients with subjective cognitive decline (SCD), a preclinical stage of cognitive impairment, in the context of emerging
Subjective Cognitive Decline (SCD) Subjective Cognitive Complaints (SCCs) Subjective Cognitive Impairment
COMPLETED·NCT00634270 · University of Alabama at Birmingham
58 enrolled · 2008-04 · → 2014-11
Treatment Overview This phase II study will evaluate the activity of sirolimus in children and adults with NF1 and inoperable plexiform neurofibromas that have the potential to cause significant morb
Neurofibromatosis Type 1
Sirolimus
RECRUITING·NCT04838301 · University of Arizona
100 enrolled · 2023-08-15 · → 2026-11-18
A phase 2, double-blind, randomized, placebo-controlled clinical trial to evaluate the safety and efficacy of Allopregnanolone as a regenerative therapeutic for Alzheimer's disease.
Alzheimer Dementia Late Onset Alzheimer Disease Neurodegenerative Diseases
Allopregnanolone Placebo
COMPLETED·NCT00884507 · Hoffmann-La Roche
389 enrolled · 2009-05 · → 2010-11
This 4 arm study will assess the efficacy and safety of RO5313534 (MEM3454) versus placebo added to donepezil, in patients with mild to moderate Alzheimer's disease. Following a screening period, pati
Alzheimer's Disease
Placebo RO5313534 RO5313534
NOT_YET_RECRUITING·NCT07022431 · University of Seville
34 enrolled · 2025-10 · → 2025-10
The primary objective of this project is to examine the impact of a strength training program with high cognitive demands on cognitive function, motor skills, physical fitness, and quality of life in
Alzheimer Disease
Interval strength training
WITHDRAWN·NCT01066481 · Pfizer
2010-04 · → 2012-03
The purpose of this study is to demonstrate the safety and efficacy of PF-01913539 in the treatment of patients with mild-to-moderate Alzheimer's Disease. It is a 6-month study enrolling 651 patients
Alzheimer's Disease Dementia Dimebon
PF-01913539 5 mg PF-01913539 5 mg Placebo
RECRUITING·NCT06871384 · University Rovira i Virgili
72 enrolled · 2025-03-26 · → 2026-09
Polyphenols, precisely resveratrol, with red wine as the most substantial source, was associated with improvements in cognitive function. Also, the loss of muscle mass and strength in elderly, that si
Cognitive Disorders Muscular Disorders, Atrophic
Nonalcoholic red wine group (Intervention group) Drinking water group (Control group)
COMPLETED·NCT05166564 · Queen's University, Belfast
105 enrolled · 2022-01-18 · → 2024-01-31
PROMED-EX is a single-blind, parallel group randomised controlled trial to determine the effect of a PROtein enriched MEDiterranean diet (PROMED) in comparison to a PROtein enriched MEDiterranean diet
Cognitive Impairment Poor Nutrition Cognitive Decline
A Protein Enriched Mediterranean Diet (PROMED) Intervention A Protein Enriched Mediterranean Diet & Exercise (PROMED-EX) Intervention
RECRUITING·NCT06496412 · Second Xiangya Hospital of Central South University
40 enrolled · 2024-04-20 · → 2026-12-30
This study is a prospective, single-center, parallel-design,1:1 randomized controlled trial with triple blinding. It aims to investigate the effects of fecal microbiota transplantation (FMT) on cognit
Type 1 Diabetes
fecal microbiota transplantation Placebo

No curated ClinVar variants loaded for this hypothesis.

Run scripts/backfill_clinvar_variants.py to fetch P/LP/VUS variants.

🔍 Search ClinVar for APOE →

No DepMap CRISPR Chronos data found for APOE.

Run python3 scripts/backfill_hypothesis_depmap.py to populate.

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🔮 Predictions

🔎 Predictions vs Observations2 predictions · 0 with recorded observations
PredictionPredictedObservedStatusConf
IF human iPSC-derived astrocytes and microglia are engineered to express APOE4 versus APOE3 alleles THEN APOE4 cells will show significantly reduced lipid transport capacity (measured by cholesterol eAPOE4 astrocytes will exhibit ≥40% reduced cholesterol efflux rate and ≥2-fold higher IL-1β, TNF-α, and IL-6 secretion compared to APOE3 astrocytes under baseli— no observation —pending0.82
IF single-cell RNA sequencing is performed on post-mortem brain tissue from APOE4 homozygous AD patients versus APOE3 homozygous controls THEN the proportion of APOE-high astrocytes and disease-associAPOE4 carriers will show ≥30% increase in APOE-high astrocytes (log2FC ≥1.5 in APOE gene) and ≥25% increase in DAM cluster frequency compared to APOE3 carriers;— no observation —pending0.88
🔮 Falsifiable Predictions (2)
pendingconf —
IF human iPSC-derived astrocytes and microglia are engineered to express APOE4 versus APOE3 alleles THEN APOE4 cells will show significantly reduced lipid transport capacity (measured by cholesterol efflux assays) and increased pro-inflammatory cytokine secretion compared to APOE3 cells, using an is
Predicted outcome: APOE4 astrocytes will exhibit ≥40% reduced cholesterol efflux rate and ≥2-fold higher IL-1β, TNF-α, and IL-6 secretion compared to APOE3 astrocytes un
Falsification: If APOE4 and APOE3 glial cells show no significant difference in lipid transport capacity (<10% variation) AND equivalent inflammatory cytokine profiles (p>0.05), the hypothesis that APOE4's structura
pendingconf —
IF single-cell RNA sequencing is performed on post-mortem brain tissue from APOE4 homozygous AD patients versus APOE3 homozygous controls THEN the proportion of APOE-high astrocytes and disease-associated microglia (DAM) will be significantly higher in APOE4 carriers, using the SEA-AD brain cell atl
Predicted outcome: APOE4 carriers will show ≥30% increase in APOE-high astrocytes (log2FC ≥1.5 in APOE gene) and ≥25% increase in DAM cluster frequency compared to APOE3
Falsification: If scRNA-seq analysis reveals no significant difference in APOE expression levels between APOE genotypes across any glial subtype (p>0.05 after Bonferroni correction) OR if cell-type proportions are i

📖 References (11)

  1. Gene dose of apolipoprotein E type 4 allele and the risk of Alzheimer's disease in late onset families.
    ["Corder E H" et al.. Science (New York, N.Y.) (1993)
  2. Robust variation in infant gut microbiome assembly across a spectrum of lifestyles.
    Science (New York, N.Y.) (2022)
  3. Apolipoprotein E isoform-dependent microglia migration.
    FASEB journal : official publication of the Federation of American Societies for Experimental Biology (2011)
  4. APOE in Alzheimer's disease and neurodegeneration.
    D Allan Butterfield; Lance A Johnson. Neurobiology of disease (2020)
  5. Alzheimer Disease: An Update on Pathobiology and Treatment Strategies.
    Long JM et al.. Cell (2019)
  6. Isoform- and cell-state-specific lipidation of ApoE in astrocytes.
    Lindner K et al.. Cell Rep (2022)
  7. Off-target toxicity is a common mechanism of action of cancer drugs undergoing clinical trials.
    Science translational medicine (2020)
  8. Multi-omics and experimental validation reveal the mechanism of DanxiaTiaoban decoction in treating atherosclerosis.
    ["Yirong Ma" et al.. Phytomedicine : international journal of phytotherapy and phytopharmacology (2025)
  9. Impairment of the blood-nerve and blood-brain barriers in apolipoprotein e knockout mice.
    Experimental neurology (2001)
  10. Apolipoprotein E and Alzheimer disease: pathobiology and targeting strategies.
    Yamazaki Y et al.. Nat Rev Neurol (2019)
  11. Apolipoprotein E and Alzheimer disease: risk, mechanisms and therapy.
    Liu CC et al.. Nature reviews. Neurology (2013)
Metadata
target_geneAPOE
_schema_version1
📊 Evidence Profile Foundational
Evidence Balance
+0%
Certainty
100%
Debates
0
Incoming
3409
Outgoing
642
0 supporting 0 contradicting 0 neutral
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