@article{oai:repo.qst.go.jp:00047086, author = {松嵜, 志穂里 and 安田, 武嗣 and 坂口, 奈賀子 and 山口, 芳裕 and 明石, 真言 and 松嵜 志穂里 and 安田 武嗣 and 坂口 奈賀子 and 山口 芳裕 and 明石 真言}, issue = {1}, journal = {Journal of Radiation Research}, month = {Jan}, note = {One of the important mechanisms for gastrointestinal (GI) injury following high-dose radiation exposure is apoptosis of epithelial cells. X-linked inhibitor of apoptosis (XIAP) and cellular IAP2 (cIAP2) are intrinsic cellular inhibitors of apoptosis. In order to study the effects of exogenously added IAPs on apoptosis in intestinal epithelial cells, we constructed bacterial expression plasmids containing genes of XIAP (full-length, BIR2 domain and BIR3-RING domain with and without mutations of auto-ubiquitylation sites) and cIAP2 proteins fused to a protein-transduction domain (PTD) derived from HIV-1 Tat protein (TAT) and purified these cell-permeable recombinant proteins. When the TAT-conjugated IAPs were added to rat intestinal epithelial cells IEC6, these proteins were effectively delivered into the cells and inhibited apoptosis, even when added after irradiation. Our results suggest that PTD-mediated delivery of IAPs may have clinical potential, not only for radioprotection but also for rescuing the GI system from radiation injuries.}, pages = {100--113}, title = {Cell-permeable intrinsic cellular inhibitors of apoptosis protect and rescue intestinal epithelial cells from radiation-induced cell death}, volume = {56}, year = {2015} }