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Naïve T cells respond to antigen stimulation by exiting from quiescence into clonal expansion and functional differentiation, but the control mechanism is elusive. Here we describe that Raptor/mTORC1-dependent metabolic reprogramming is a central determinant of this transitional process. Loss of Rap...
ORGANISM(S): Mus musculus 
Campoletis raptor overview
We investigated the role of mTORC1 in murine hematopoiesis by conditionally deleting the Raptor gene in murine hematopoietic stem cells. We observed mutliple alterations evoked by Raptor loss in hematopoiesis and profiled gene-expression alterations induced by raptor loss in Flt3-Lin-Sca1+cKit+ hema...
ORGANISM(S): Mus musculus 
Analysis of proteomic changes upon deletion of Raptor or inhibition by rapamycin in mouse muscles over expressing a constitutively active Akt.
ORGANISM(S): Mus musculus (Mouse) 
2022-08-08 | PXD028796 | Pride
ra12-03_raptor-nacl - Characterization to raptor mutants (partner of the kinase TOR) and of their answer to the salt stress. - Sowing on metal grids on MS/2 medium with continuous light. Transfer after 12 days of culture for 3h to liquid MS/2 medium containing or not 200 mM NaCl. 7 dye-swap - gene k...
ORGANISM(S): Arabidopsis thaliana 
Campoletis raptor
The mechanistic target of rapamycin mTORC1 is a key regulator of cell metabolism and autophagy. Despite widespread clinical use of mTOR inhibitors, the role of mTORC1 in renal tubular function and kidney homeostasis remains elusive. By utilizing constitutive and inducible deletion of conditional Rap...
ORGANISM(S): Mus musculus 
Campoletis raptor genome assembly, iyCamRapt1
Complex molecular mechanisms ensure cellular homeostasis between nutrient sensing and energy metabolism. Strong evidence from many laboratories supports a role for the hexosamine biosynthetic pathway (HBP) and its end product, UDP-GlcNAc, as important nutrient sensors. Isotopic photocleavable taggin...
ORGANISM(S): Homo sapiens (Human) 
2023-08-03 | PXD039536 | Pride
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