Signal-Transducing Adaptor Protein-2 Modulates Fas-Mediated T Cell Apoptosis by Interacting with Caspase-8
Author(s) -
Yuichi Sekine,
Chikako Yamamoto,
Michinori Kakisaka,
Ryuta Muromoto,
Shigeyuki Kon,
Dai Ashitomi,
Natsuko Fujita,
Akihiko Yoshimura,
Kenji Oritani,
Tadashi Matsuda
Publication year - 2012
Publication title -
the journal of immunology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.737
H-Index - 372
eISSN - 1550-6606
pISSN - 0022-1767
DOI - 10.4049/jimmunol.1103467
Subject(s) - signal transducing adaptor protein , jurkat cells , microbiology and biotechnology , death domain , fadd , apoptosis , caspase , programmed cell death , signal transduction , caspase 8 , biology , chemistry , t cell , immunology , biochemistry , immune system
We found that an adaptor protein, signal-transducing adaptor protein (STAP)-2, is a new member of the Fas-death-inducing signaling complex and participates in activation-induced cell death in T cells. STAP-2 enhanced Fas-mediated apoptosis and caspase-8 aggregation and activation in Jurkat T cells. Importantly, STAP-2 directly interacted with caspase-8 and Fas, resulting in enhanced interactions between caspase-8 and FADD in the Fas-death-inducing signaling complex. Moreover, STAP-2 protein has a consensus caspase-8 cleavage sequence, VEAD, in its C-terminal domain, and processing of STAP-2 by caspase-8 was crucial for Fas-induced apoptosis. Physiologic roles of STAP-2 were confirmed by observations that STAP-2-deficient mice displayed impaired activation-induced cell death and superantigen-induced T cell depletion. Therefore, STAP-2 is a novel participant in the regulation of T cell apoptosis after stimulation.
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