
The thymus is the primary organ responsible for de novo generation of immunocompetent T cells that have a diverse repertoire of antigen recognition. During the developmental process, 98% of thymocytes die by apoptosis. Thus apoptosis is a dominant process in the thymus and occurs through either death by neglect or negative selection or through induction by stress/aging. Caspase activation is an essential part of the general apoptosis mechanism, and data suggest that caspases may have a role in negative selection; however, it seems more probable that caspase-8 activation is involved in death by neglect, particularly in glucocorticoid-induced thymocyte apoptosis. Caspase-8 is active in double-positive (DP) thymocytes in vivo and can be activated in vitro in DP thymocytes by T-cell receptor (TCR) crosslinking to induce apoptosis. Caspase-8 is a proapoptotic member of the caspase family and is considered an initiator caspase, which is activated upon stimulation of a death receptor (e.g., Fas), recruitment of the adaptor molecule FADD, and recruitment and subsequent processing of procaspase-8. The main role of caspase-8 seems to be pro-apoptotic and, in this review, we will discuss about the involvement of caspase-8 in (1) TCR-triggered thymic apoptosis; (2) death receptor-mediated thymic apoptosis; and (3) glucocorticoid-induced thymic apoptosis. Regarding TCR triggering, caspase-8 is active in medullary, semi-mature heat-stable antigen(hi) (HAS(hi) SP) thymocytes as a consequence of strong TCR stimulation. The death receptors Fas, FADD, and FLIP are involved upstream of caspase-8 activation in apoptosis; whereas, Bid and HDAC7 are involved downstream of caspase-8. Finally, caspase-8 is involved in glucocortocoid-induced thymocyte apoptosis through an activation loop with the protein GILZ. GILZ activates caspase-8, promoting GILZ sumoylation and its protection from proteasomal degradation.
Caspase 8, Animals, Humans, Thymus Gland, caspase 8; death receptor; Fas antigen; Fas associated death domain protein; FLICE inhibitory protein; protein; protein gilz; T lymphocyte receptor; unclassified drug; caspase 8; antigen recognition; cell aging; cell stress; human; immunocompetent cell; nonhuman; priority journal; protein degradation; review; sumoylation; T lymphocyte; thymocyte; thymus function; animal; enzymology; metabolism; physiology; thymus
Caspase 8, Animals, Humans, Thymus Gland, caspase 8; death receptor; Fas antigen; Fas associated death domain protein; FLICE inhibitory protein; protein; protein gilz; T lymphocyte receptor; unclassified drug; caspase 8; antigen recognition; cell aging; cell stress; human; immunocompetent cell; nonhuman; priority journal; protein degradation; review; sumoylation; T lymphocyte; thymocyte; thymus function; animal; enzymology; metabolism; physiology; thymus
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