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Anxiety is an aggravating comorbidity of many psychiatric disorders that is often underdiagnosed and undertreated, and little is known on the mechanisms underlying its regulation. Here, we find that serum LPA16:0 abundance increases with trait anxiety in both humans and mice; while high LPA16:0 l...

2026-02-05 | MTBLS13589 | MetaboLights

The widespread industrial transition from bisphenol A (BPA) to structural analogs such as BPS, BPE, and BPAF has raised significant concerns regarding their potential health risks. However, their neurodevelopmental risks and underlying molecular mechanisms, particularly when present as complex m...

2026-09-29 | MTBLS15671 | MetaboLights
Physical exercise stimulates adult hippocampal neurogenesis in mammals, and is considered a relevant strategy for preventing age-related cognitive decline in aging humans. However, its mechanism is controversial. Here, by investigating microRNAs (miRNAs) and their downstream pathways, we uncover tha...
ORGANISM(S): Mus musculus (Mouse) 
2019-11-12 | PXD009845 | Pride
Raw mass spectrometry data associated with the following paper: Temporal Proteomics During Neurogenesis Reveals Large-scale Proteome and Organelle Remodeling via Selective Autophagy. DOI:10.1016/j.molcel.2021.10.001 Related to Figure1D: AO3335-AO3345 Related to Figure4B: Day0 (AO3379-3390); Day4 (AO...
ORGANISM(S): Homo Sapiens (ncbitaxon:9606) 
2021-08-09 | MSV000087961 | MassIVE
FOXO transcription factors are central regulators of longevity from worms to humans. FOXO3 – the FOXO isoform associated with exceptional human longevity – preserves adult neural stem cell pools. Here we identify FOXO3 direct targets genome-wide in primary cultures of adult neural progenitor cells (...
ORGANISM(S): Mus musculus 
The epigenetic changes of the chromatin represent an attractive molecular substrate for adaptation to the environment. We examined here the role of CBP, a histone acetyltransferase involved in mental retardation, in the genesis and maintenance of long-lasting systemic and behavioral adaptations to e...
ORGANISM(S): Mus musculus 
We sought to find molecular signatures of the SGZ cell types, and to characterize the molecular pathways and transcription factor cascades that define the neurogenic niche. We used laser capture microdissection and DNA microarrays to profile gene expression in the inner (SGZ) and outer portions of t...
ORGANISM(S): Mus musculus 
The transcription factor Pax6 acts as a key developmental regulator in various organs. In the developing brain Pax6 regulates patterning, neurogenesis and proliferation, but how these diverse effects are mediated at the molecular level is not well understood. As Pax6 regulates forebrain development ...
ORGANISM(S): Mus musculus 
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