Abstract
Scrape loading Clostridium botulinum C3 exoenzyme into primary peripheral blood human T lymphocytes (PB T cells) efficiently adenosine diphosphate (ADP)-ribosylates and thus inactivates the guanosine triphosphatase (GTPase) Rho. Basal adhesion of PB T cells to the β1 integrin substrate fibronectin (Fn) was not inhibited by inactivation of Rho, nor was upregulation of adhesion using phorbol myristate acetate (PMA; 10 ng/ml) or Mn++ (1 mM) affected. Whereas untreated PB T cells adherent to Fn remain spherical, C3-treated PB T cells extend F-actin-containing pseudopodia. Inactivation of Rho delayed the kinetics of PMA-dependent PB T cell homotypic aggregation, a process involving integrin αLβ2. Although C3 treatment of PB T cells did not prevent adhesion to the β1 integrin substrate Fn, it did inhibit β1 integrin/CD3-mediated costimulation of proliferation. Analysis of intracellular cytokine production at the single cell level demonstrated that ADP-ribosytation of Rho inhibited β1 integrin/CD3 and CD28/CD3 costimulation of IL-2 production within 6 h of activation. Strikingly, IL-2 production induced by PMA and ionomycin was unaffected by C3 treatment. Thus, the GTPase Rho is a novel regulator oft lymphocyte cytoarchitecture, and functional Rho is required for very early events regulating costimulation of IL-2 production in PB T cells.
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Woodside, D. G., Wooten, D. K., & McIntyre, B. W. (1998). Adenosine diphosphate (ADP)-ribosylation of the guanosine triphosphatase (GTPase) Rho in resting peripheral blood human T lymphocytes results in pseudopodial extension and the inhibition of T cell activation. Journal of Experimental Medicine, 188(7), 1211–1221. https://doi.org/10.1084/jem.188.7.1211
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