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Compartmentalisation proteomics revealed endolysosomal protein network changes in goat model of atrial fibrillation
Disruption of endolysosomal acidification is a hallmark of several neurodevelopmental and neurodegenerative disorders. Impaired acidification causes accumulation of toxic protein aggregates and disrupts neuronal homeostasis, yet the molecular mechanisms regulating endolysosomal pH in neurons remain ...
ORGANISM(S): Homo sapiens (Human) 
2025-06-16 | PXD064977 | Pride
The emerging roles of endolysosomes (EL) in AF have yet to be discovered, especially how the EL contribute to the development of AF within a slow time frame. To identify the EL role in AF, we applied proteomics, transcriptomics, integrated analysis, electron tomography, western blotting and enzyme a...
ORGANISM(S): Capra hircus x Ovis aries 
2024-06-16 | PXD041056 | Pride
To identify the role of the endolysosomal (EL) protein network in atrial fibrillation (AF), we applied a newly developed organelle isolation method to the AF goat model. To accomplish the goal, we used proteomics, transcriptomics, integrated analysis, enzyme assays, electron tomography, and western ...
ORGANISM(S): Capra hircus 
2024-06-12 | GSE228289 | GEO
Organelle crosstalk plays important functions in metabolic processes and is relevant to immunity, neurodegeneration, and cancer. The permeabilisation and rupture of endolysosomes during stress can induce inflammation and cell death. There is growing evidence that endomembrane damage does not always ...
ORGANISM(S): Homo sapiens (Human) 
2022-10-30 | PXD026045 | Pride
Proximity-based in situ labeling techniques offer a unique way to capture both stable and transient protein-protein and protein-organelle interactions. Combining this technology with mass spectrometry (MS)-based proteomics allows us to obtain snapshots of molecular microenvironments with nanometer r...
ORGANISM(S): Homo Sapiens (ncbitaxon:9606) 
2020-10-10 | MSV000086260 | MassIVE
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