Alzheimer & Parkinson
Repositioning of polyubiquitin alters the pathologic tau filament structure
Structurally diverse tau filaments form proteinaceous aggregates in a heterogeneous group of neurodegenerative diseases called tauopathies. The factors extrinsic to the highly ordered core structure that influence tau filament stability are not well understood. Here, we found that polyubiquitinated tau filaments from Alzheimer disease and vacuolar tauopathy human brain tissue exhibit distinct seeding patterns in mice, in association with differences in tau filament ultrastructure determined by...
VAVL motor thalamus activity pattern changes following levodopa-induced dyskinesia in a rat model of Parkinson's disease
Levodopa is the gold-standard treatment for Parkinson's disease, but chronic use results in levodopa-induced dyskinesia (LID) in approximately 80% of patients. Previous research has identified critical network changes in the cortico-basal ganglia pathway associated with LID; however, no study has extensively recorded motor thalamus single-cell activity in a LID model. The motor thalamus is a key node in the movement pathway, receiving basal ganglia and cerebellar inputs and projecting an...
A machine learning framework for predicting and modulating condition-dependent protein phase separation
Protein phase separation is a fundamental process in organizing membraneless organelles and is implicated in pathological conditions. Importantly, this process is dynamic and depends on conditions such as concentration, temperature, and solvent composition. However, current machine learning models infer phase separation propensity solely from amino acid sequences, failing to capture these context-dependent behaviors. Here we show that LLPSense, a machine learning framework that integrates...
A massively parallel CRISPR-based screening platform for modifiers of neuronal depolarization
Understanding the complex interplay between gene expression and neuronal activity is crucial for unraveling the molecular mechanisms underlying cognitive function and neurological disorders. Here, we developed pooled screens using CRISPR interference (CRISPRi) and the fluorescent calcium integrator CaMPARI2 to evaluate genetic modifiers of neuronal depolarization. Using this screening method, we evaluated 1343 genes for their effect on depolarization in a human iPSC-derived neuron model,...
Higher Frontal Cortex Angiotensin Type 2 Receptor-Interacting Protein (ATIP) Levels Are Associated With a Lower Amyloid-Beta Burden in Postmortem Brains of Older Adults With Alzheimer's Disease
Alzheimer's disease (AD) is a complex neurodegenerative disorder characterized by amyloid-β (Aβ) and tau accumulation. Dysregulation of the brain renin-angiotensin system, particularly hyperactivation of the angiotensin II type-1 receptor, contributes to AD pathogenesis. In contrast, activation of the angiotensin II type-2 receptor (AT(2)R) has been linked to neuroprotection and reduced Aβ accumulation. However, the underlying mechanisms of AT(2)R-related Aβ reduction and the role of...
Closing the gap in Alzheimer's disease research through the Sex | Gender in Neurodegeneration Consortium
No abstract
Neuron-derived SPP1 instructs microglia to limit degeneration
Neurons actively shape immune responses that maintain central nervous system integrity. We identify SPP1 (secreted phosphoprotein 1) as a neuron-derived signal that reprograms microglia into a neuroprotective, homeostatic state after injury and during neurodegeneration. In mouse models of glaucoma and optic nerve damage, neuronal SPP1 enhances microglial autophagy, debris clearance, and anti-inflammatory activity, preserving neuronal survival and visual function. SPP1 is elevated in neurons of...
A New agent in the matrix: PINK1's expanded role in mitochondrial surveillance and Regulation
The identification of pathogenic autosomal recessive mutations in the gene encoding the PINK1 kinase provided early evidence linking mitochondrial dysfunction to neurodegeneration - in this case Parkinson's Disease. PINK1 has since become synonymous with mitophagy, with the prevailing model proposing two alternative fates. The first being partial import - inner-membrane penetration of its transmembrane domain (TMD) - followed by PARL-mediated cleavage and degradation. This happens in healthy...
Leucine-rich repeat kinase 2 impairs the release sites of Parkinson's disease vulnerable dopamine axons
Parkinson's disease (PD) is defined pathologically by loss of dopamine-producing neurons in the substantia nigra pars compacta (SNc). Yet synaptic dysfunction emerges much earlier, making it essential to define the mechanisms that drive early nigrostriatal deregulation. In the SNc, molecularly distinct dopamine neuron subtypes show differential susceptibility to PD. Here, we used intersectional genetic mouse models to determine how the PD-linked kinase LRRK2 affects vulnerable dopamine subtypes....
A multiancestry polygenic risk score for Alzheimer's disease is associated with cognitive decline and neuropathological hallmarks in diverse populations
Previously derived polygenic risk scores (PRSs) for Alzheimer's disease (AD) perform inconsistently across diverse ancestries. We developed an APOE-independent multiancestry AD PRS using genome-wide association study summary statistics applied to European ancestry, African American, Caribbean Hispanic and East Asian cohorts. PRS performance was evaluated in a large independent multiancestry dataset and validated in several additional multiancestry cohorts. The PRS was significantly associated...
Disruption of sphingolipid metabolism promotes tau seeding through endolysosomal membrane rigidification and rupture
Endolysosomal dysfunction is a hallmark of Alzheimer's disease and related tauopathies, yet underlying mechanisms remain poorly understood. This study investigates the role of sphingolipid metabolism in maintaining endolysosomal membrane integrity and its impact on tau aggregation and toxicity in Caenorhabditis elegans and human cell culture models. Fluorescence recovery after photobleaching and C-Laurdan dye imaging revealed that silencing sphingolipid metabolism genes reduced endolysosomal...
Aberrant excitatory neuronal ERBB4 promotes Alzheimer's disease pathology
Neuroinflammation and synapse loss are associated with cognitive decline in Alzheimer's disease (AD). Although microglial hyperphagocytic activity has been implicated in synapse loss^(1-4), the mechanisms underlying these pathologies remain obscure. Here we demonstrate that, during AD progression in mice, astrocytes and microglia increase phagocytic elimination of excitatory synapses while reducing elimination of inhibitory synapses, suggesting that neuroinflammation alone may be dispensable for...
Next-generation multiplexed targeted proteomics quantifies post-translational modifications in disease and compound-protein interactions with high throughput
The GoDig platform enables sensitive, multiplexed targeted pathway proteomics without manual scheduling or synthetic standards. Here we present GoDig 2.0, which increases sample multiplexing to 35-fold, improves time efficiency and reduces scan delays for higher success rates, and allows flexible spectral and elution library generation from different mass spectrometry data types. GoDig 2.0 measures 2.4× more targets than GoDig 1.0, quantifying >99% of 800 peptides in a single run. We compile a...
Small molecule boosts Parkinson disease treatment
No abstract
Anti-amyloid drugs: Integrated clinical pathways for treating older patients with frailty and dementia
The introduction of anti-amyloid therapies for Alzheimer's disease challenged current care models, particularly for older adults with frailty. The potential low efficacy of anti-amyloid drugs in these patients may be attributed to chronic inflammation, impaired repair mechanisms, and multisystem dysregulation. Neuropathological studies suggested that the accumulation of common brain pathologies may contribute to progressive physical frailty in older age. At present, there is no certified...
In vitro cell-line models of Alzheimer's disease: A systematic review and mechanism-based evidence map of induction paradigms, targeted mechanisms, and validation requirements
CONCLUSIONS: While classical cell lines remain essential for initial mechanistic screening, establishing disease-level relevance requires validation through orthogonal readouts and high-fidelity human models, such as multicellular organoids or blood-brain barrier systems.
Vaccination strategies in neurodegenerative proteinopathies
Neurodegenerative diseases (NDs) such as Alzheimer's disease (AD), Parkinson's disease (PD), and prion diseases represent a growing global health crisis. Despite significant research efforts, disease-modifying therapies remain elusive. Immunotherapy, particularly vaccination, offers a promising avenue by leveraging the body's immune system to clear pathological protein aggregates central to these disorders. This review critically analyzes the historical trajectory, current advancements, and...
Manifold representation learning for Alzheimer's disease detection with EEG-based functional brain connectivity
Alzheimer's disease (AD) is a common neurodegenerative disease characterized by severe cognitive dysfunctions and brain disorders. The emergence of deep learning methods provides a feasible way to develop effective representations for clinical diagnosis of brain diseases. In this study, we proposed a deep manifold representation learning network to characterize the alteration of functional brain connectivity for AD detection. The proposed framework used a convolutional autoencoder (CAE) to infer...
Midfrontal oscillatory alterations during gait imagination and observation in Parkinson's disease with freezing of gait
Freezing of gait (FOG) is a disabling motor symptom in Parkinson's disease (PD), linked to impaired motor automaticity and cognitive control. Cognitive strategies like motor imagery (gait imagination, GI) and action observation (gait observation, GO) are used in rehabilitation, but their neural mechanisms are not well understood. This study used EEG to examine midfrontal oscillations during GI and GO in healthy controls (HC, n = 21), PD without FOG (PDFOG-, n = 16), and PD with FOG (PDFOG+, n =...
Loss of neuronal population organization links pathology to behavior in a model of Alzheimer's disease
Alzheimer's disease and related dementias are typically described at two levels: the accumulation of molecular pathology and the emergence of cognitive impairment. Understanding the relationship between pathology, often studied in animal models, and human cognition will require measurements spanning intermediate scales, including single neurons, neuronal populations, and distributed networks. Here we combine longitudinal measurements of behavior and neuronal population activity with fluid and...
Alzheimer and Parkinson: Latest results from PubMed
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