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1.
Immunol Rev ; 298(1): 134-152, 2020 11.
Article in English | MEDLINE | ID: mdl-33136294

ABSTRACT

As interest increases in harnessing the potential power of tissue-resident cells for human health and disease, γδ T cells have been thrust into the limelight due to their prevalence in peripheral tissues, their sentinel-like phenotypes, and their unique antigen recognition capabilities. This review focuses primarily on human γδ T cells, highlighting their distinctive characteristics including antigen recognition, function, and development, with an emphasis on where they differ from their αß T cell comparators, as well as from γδ T cell populations in the mouse. We review the antigens that have been identified thus far to regulate members of the human Vδ1 population and discuss what players are involved in transducing phosphoantigen-mediated signals to human Vγ9Vδ2 T cells. We also briefly review distinguishing features of these cells in terms of TCR signaling, use of coreceptor and costimulatory molecules and their development. These cells have great potential to be harnessed in a clinical setting, but caution must be taken to understand their unique capabilities and how they differ from the populations to which they are commonly compared.


Subject(s)
Receptors, Antigen, T-Cell, gamma-delta , T-Lymphocytes , Animals , Antigens , Humans , Mice , Signal Transduction
2.
Diabetes ; 66(6): 1601-1610, 2017 06.
Article in English | MEDLINE | ID: mdl-28292967

ABSTRACT

Glucocorticoids promote lipolysis in white adipose tissue (WAT) to adapt to energy demands under stress, whereas superfluous lipolysis causes metabolic disorders, including dyslipidemia and hepatic steatosis. Glucocorticoid-induced lipolysis requires the phosphorylation of cytosolic hormone-sensitive lipase (HSL) and perilipin 1 (Plin1) in the lipid droplet by protein kinase A (PKA). We previously identified Pik3r1 (also called p85α) as a glucocorticoid receptor target gene. Here, we found that glucocorticoids increased HSL phosphorylation, but not Plin1 phosphorylation, in adipose tissue-specific Pik3r1-null (AKO) mice. Furthermore, in lipid droplets, the phosphorylation of HSL and Plin1 and the levels of catalytic and regulatory subunits of PKA were increased by glucocorticoids in wild-type mice. However, these effects were attenuated in AKO mice. In agreement with reduced WAT lipolysis, glucocorticoid- initiated hepatic steatosis and hypertriglyceridemia were improved in AKO mice. Our data demonstrated a novel role of Pik3r1 that was independent of the regulatory function of phosphoinositide 3-kinase in mediating the metabolic action of glucocorticoids. Thus, the inhibition of Pik3r1 in adipocytes could alleviate lipid disorders caused by excess glucocorticoid exposure.


Subject(s)
Adipocytes/metabolism , Class Ia Phosphatidylinositol 3-Kinase/genetics , Lipid Droplets/metabolism , Lipolysis , Perilipin-1/metabolism , Adipocytes/drug effects , Adipose Tissue, White/metabolism , Animals , Blotting, Western , Dexamethasone/pharmacology , Fatty Acids, Nonesterified/metabolism , Gene Knockdown Techniques , Glucocorticoids/pharmacology , Insulin/metabolism , Lipid Droplets/drug effects , Mice , Perilipin-1/drug effects , Phosphatidylinositol 3-Kinases/genetics , Phosphorylation/drug effects , Phosphorylation/genetics , Real-Time Polymerase Chain Reaction , Sterol Esterase/drug effects , Sterol Esterase/metabolism
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