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Parvalbumin neurons, as an important subtype of inhibitory neurons, play a crucial role in the brain. The dysfunctions of those cells are associated with multiple neural system disorders. We carried out whole gene expression studies for the induction process of parvalbumin neurons. We used microarra...
ORGANISM(S): Mus musculus 
We provide an annotated cDNA clone collection which is particularly suitable for transcriptomic analysis in the mouse brain. Using it on microarrays, we compared the transcriptome of EGFP positive and negative cells in a parvalbumin-egfp transgenic background and showed that more than 30 % of clones...
ORGANISM(S): Mus musculus 
Exercise benefits M2 macrophage polarization, energy homeostasis and protects against obesity partially through exercise-induced circulating factors. Here, by unbiased quantitative proteomics on serum samples from sedentary and exercised mice, we identify parvalbumin as a circulating factor suppress...
ORGANISM(S): Mus musculus (Mouse) 
2022-05-10 | PXD033582 | Pride
Two key paradigms for examining activity-dependent development of primary visual cortex (V1) involve either reduction of activity in both eyes via dark-rearing (DR) or imbalance of activity between the two eyes via monocular deprivation (MD).,Combining DNA microarray analysis with computational appr...
ORGANISM(S): Mus musculus 
One of the earliest pathophysiological perturbations in Alzheimer’s Disease (AD) may arise from dysfunction of fast-spiking parvalbumin (PV) interneurons (PV-INs). Defining early protein-level (proteomic) alterations in PV-INs can provide key biological and translationally relevant insights. Here, w...
ORGANISM(S): Mus musculus (Mouse) 
2024-03-04 | PXD043963 | Pride
Ribosome-associated RNA sequencing of medial prefrontal cortex parvalbumin interneurons following Foxo1 deletion
The distal convoluted tubule (DCT) plays a key role in the fine-tuning of renal Mg2+ reabsorption. In recent years, hereditary magnesium (Mg2+) transport disorders have helped to identify important players in DCT Mg2+ homeostasis. Here, we report the Mg2+-sensitive transcriptional expression of the ...
ORGANISM(S): Mus musculus 
RiboTag-IP-RNA sequencing of parvalbumin neurons in frontal cortex of Fxr1 knockout mice
Thyroid hormones maintain parvalbumin neuron functions in mouse neocortex
Osteocyte Parvalbumin Mediates Mechanotransduction to Attenuate Osteoarthritis
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