Sort   by:  
 Page size 
Loss of proteostasis is well documented during physiological aging and depends on the progressive decline in the activity of two major degradative mechanisms: the ubiquitin-proteasome system (UPS) and the autophagy-lysosomal pathway. This decline in proteostasis is exacerbated in age-associated neur...
ORGANISM(S): Homo sapiens (Human) 
2024-12-18 | PXD056511 | Pride
We developed a toolkit for capturing endosomes (Endo-IP) and lysosomes (Lyso-IP) in human stem cell(hESC)-derived induced neurons (iNeurons). We target a sub-population of early endosomes marked by endogenously tagged EEA1 (Early Endosome Antigen 1) protein, which represents one of the earliest popu...
ORGANISM(S): Homo sapiens (Human) 
2025-01-11 | PXD055978 | Pride
Identification of TBK1 interactors in control iNeurons with AP-MS
ORGANISM(S): Homo sapiens (Human) 
2025-09-19 | PXD068535 | Pride
The deletion of the Williams-Beuren Syndrome critical region dysregulate the expression of miR379-410 miRNA members in human isogenic iNeurons
Local translation in ASCL1-iNeurons was probed using QuaNCAT
ORGANISM(S): Mus musculus (Mouse) 
2018-10-17 | PXD005059 | Pride
We generated induced excitatory sensory neurons (iNeurons, iNs) from pluripotent stem cells of great apes (Human, Chimpanzee and Bonobo) by expressing the transcription factor neurogenin 2 (Ngn2). Single cell-RNA sequencing was performed to identify gene expressions differing in dendrite and synapse...
ORGANISM(S): Pan paniscus 
Sort   by:  
 Page size