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The experiment was performed to identify autophagy targets in wildtype and autophagy-deficient primary neurons. Therefore, cortico-hippocampal neurons were isolated from Atg5flox:CAG-CreTmx mice and treated with Tamoxifen (Tmx) to induce the knockout (KO) or EtOH for wildtype (WT) in-vitro. WT and K...
ORGANISM(S): Mus musculus (Mouse) 
2022-11-15 | PXD031487 | Pride
The experiment was performed to identify autophagy targets in wildtype and autophagy-deficient forebrain inhibitory neurons. Therefore, neurons were isolated from the cortex, hippocampus and striatum of 2-3 weeks old Atg5flox/flox:Slc32a1-Cretg/wt:tdTomato+ (KO) and Atg5wt/wt:Slc332a1-Cretg/wt:tdTom...
ORGANISM(S): Mus musculus (Mouse) 
2022-11-15 | PXD031535 | Pride
The experiment was performed to identify autophagy targets in wildtype and autophagy-deficient forebrain excitatory neurons. Therefore, neurons were isolated from the cortex, hippocampus and striatum of 2-3 weeks old Atg5flox/flox:CamKIIα-Cretg/wt:tdTomato+ (KO) and Atg5wt/wt:CamKIIα-Cretg/wt:tdToma...
ORGANISM(S): Mus musculus (Mouse) 
2022-11-15 | PXD031552 | Pride
Autophagy represents a key regulator of aging and metabolism upon cell autonomous sensing of energy deprivation. We find that fasting in mice activates autophagy in liver paralleled by activation of hypothalamic AgRP neurons. Optogenetic and chemogenetic activation of AgRP neurons induces autophagy,...
ORGANISM(S): Mus musculus (Mouse) 
2023-04-18 | PXD029247 | Pride
The selective autophagy receptor p62/SQSTM1 (from hereon p62) is known to form higher-order filaments in vitro and to undergo liquid-liquid phase separation when mixed with poly-ubiquitin. We determined the full-length cryo-EM structure of p62 and elucidated a structured double helical filament scaf...
ORGANISM(S): Homo sapiens (Human) 
2025-12-08 | PXD066163 | Pride
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