AI Article Synopsis

  • This study uses quantitative mass spectrometry to analyze how CD4 and CD8 T cells change their protein profiles when exposed to antigens and the mTORC1 pathway.* -
  • The research found that immune activation influences how T cells sense their environment and that there are differences in nutrient transport and protein synthesis between CD4 and CD8 T cells.* -
  • The effects of inhibiting mTORC1 differ between naïve and effector T cells, affecting cell cycle progression in naïve cells but consistently impacting metabolism in both types, providing a detailed map of T cell proteomes.*

Article Abstract

Quantitative mass spectrometry reveals how CD4 and CD8 T cells restructure proteomes in response to antigen and mammalian target of rapamycin complex 1 (mTORC1). Analysis of copy numbers per cell of >9,000 proteins provides new understanding of T cell phenotypes, exposing the metabolic and protein synthesis machinery and environmental sensors that shape T cell fate. We reveal that lymphocyte environment sensing is controlled by immune activation, and that CD4 and CD8 T cells differ in their intrinsic nutrient transport and biosynthetic capacity. Our data also reveal shared and divergent outcomes of mTORC1 inhibition in naïve versus effector T cells: mTORC1 inhibition impaired cell cycle progression in activated naïve cells, but not effector cells, whereas metabolism was consistently impacted in both populations. This study provides a comprehensive map of naïve and effector T cell proteomes, and a resource for exploring and understanding T cell phenotypes and cell context effects of mTORC1.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6859072PMC
http://dx.doi.org/10.1038/s41590-019-0495-xDOI Listing

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