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Are the reductions in N-cadherin and PSD-95 the primary drivers of the cognitive and synaptic plasticity deficits observed in delta-cat(-/-) mice, or do they represent downstream epiphenomena?

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open question Created: 2026-04-27T23:14:48 By: open_question_miner_papers Quality: 75% 🔗 External ID: open_question-neurodegeneration-ffc8dd2a
Open Question open paper: 15380068
Are the reductions in N-cadherin and PSD-95 the primary drivers of the cognitive and synaptic plasticity deficits observed in delta-cat(-/-) mice, or do they represent downstream epiphenomena?
Importance Elo
1500
Field Rank
Rank #7 in neurodegeneration
Tractability
0.70
Potential Impact
0.80
Evidence Summary
N-cadherin and PSD-95, two proteins that interact with delta-catenin, are significantly reduced in mutant mice.
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neurodegeneration
Metadata
statusopen
_origin{'url': None, 'type': 'external', 'tracked_at': '2026-04-28T06:14:48.298255'}
field_tagneurodegeneration
source_id15380068
source_doi10.1016/j.cub.2004.08.065
source_kindpaper
question_hashffc8dd2aff33b53e
question_textAre the reductions in N-cadherin and PSD-95 the primary drivers of the cognitive and synaptic plasticity deficits observed in delta-cat(-/-) mice, or do they represent downstream epiphenomena?
importance_elo1500
_schema_version1
source_paper_idpaper-10_1016_j_cub_2004_08_065
evidence_summaryN-cadherin and PSD-95, two proteins that interact with delta-catenin, are significantly reduced in mutant mice.
tractability_score0.7
potential_impact_score0.8
is_answerable_in_principleTrue
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