TY - JOUR
T1 - Altered cellular immunity in transgenic mice with T cell-specific expression of human D4-guanine diphosphate-dissociation inhibitor (D4-GDI)
AU - Kondoh, Kensuke
AU - Nakata, Yuji
AU - Yamaoka, Takashi
AU - Itakura, Mitsuo
AU - Hayashi, Mutsumi
AU - Yamada, Kohji
AU - Hata, Jun Ichi
AU - Yamada, Taketo
N1 - Funding Information:
Program for Promotion of Fundamental Studies in Health Sciences of the National Institute of Biomedical Innovation (07-17), Grants-in Aid for Pediatric Research (9C-5, 12C-1) from the Ministry of Health and Welfare; Ministry of Education in Japan (05404022, 07670258, 07770163, 1770124, 11670193, 10307004); National Grant-in-Aid for the Establishment of a High-Tech Research Center in a Private University, Sankyo Foundation of Life Science, Tsumura Foundation for Medical Research, Kawano Foundation for Children Cancer Research; and Keio Gijuku Academic Development Funds and a special grant-in-aid for innovative and collaborative research projects at Keio University.
PY - 2008
Y1 - 2008
N2 - D4-GDI, a Rho guanosine diphosphate (GDP) dissociation inhibitor, is preferentially expressed in hematopoietic tissues and binds to a small GTP-binding protein, Rho, and inhibits GDP dissociation from Rho. We identified point mutations in the D4-GDI gene in human leukemic cells. We therefore investigated the functions of D4-GDI and mutated D4-GDI in T cells. Transgenic mice (Tg) harboring human wild-type and mutant D4-GDI transgenes driven by the lck promoter were generated. Cellular immunity responses against cytozoic pathogens were examined. The cytoskeletal organization in the CD3+T cells and the proliferation of splenocytes by Con A were investigated in both Tg and littermates (LMs). Granuloma formation by bacille Calmette-Guerin was impaired in the wild-type D4-GDI Tg. On the other hand, the number of granulomas of the mutated D4-Tg was significantly higher. Infection with Listeria was more rapidly fatal to wild-type D4-GDI Tg than to LMs, while the survival of mutated D4-GDI Tg was prolonged. The CD3+T cells in wild-type D4-GDI Tg showed an impairment in the formation of stress fibers on anti-CD3 antibody-coated plates, whereas the cytoskeletal organization in CD3+T cells of the mutated D4-GDI Tg was augmented. The proliferation of splenocytes after Con A stimulation was higher in the mutated D4-GDI Tg than in the LMs. D4-GDI may have important functions, such as induction of T cell migration, adhesion and/or proliferation in inflammatory foci, in cellular immunity responses to cytozoic pathogens.
AB - D4-GDI, a Rho guanosine diphosphate (GDP) dissociation inhibitor, is preferentially expressed in hematopoietic tissues and binds to a small GTP-binding protein, Rho, and inhibits GDP dissociation from Rho. We identified point mutations in the D4-GDI gene in human leukemic cells. We therefore investigated the functions of D4-GDI and mutated D4-GDI in T cells. Transgenic mice (Tg) harboring human wild-type and mutant D4-GDI transgenes driven by the lck promoter were generated. Cellular immunity responses against cytozoic pathogens were examined. The cytoskeletal organization in the CD3+T cells and the proliferation of splenocytes by Con A were investigated in both Tg and littermates (LMs). Granuloma formation by bacille Calmette-Guerin was impaired in the wild-type D4-GDI Tg. On the other hand, the number of granulomas of the mutated D4-Tg was significantly higher. Infection with Listeria was more rapidly fatal to wild-type D4-GDI Tg than to LMs, while the survival of mutated D4-GDI Tg was prolonged. The CD3+T cells in wild-type D4-GDI Tg showed an impairment in the formation of stress fibers on anti-CD3 antibody-coated plates, whereas the cytoskeletal organization in CD3+T cells of the mutated D4-GDI Tg was augmented. The proliferation of splenocytes after Con A stimulation was higher in the mutated D4-GDI Tg than in the LMs. D4-GDI may have important functions, such as induction of T cell migration, adhesion and/or proliferation in inflammatory foci, in cellular immunity responses to cytozoic pathogens.
KW - Cytoskeletal organization
KW - Cytozoic pathogens
KW - Leukemic cells
KW - Proliferation
KW - Rho
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U2 - 10.1093/intimm/dxn084
DO - 10.1093/intimm/dxn084
M3 - Article
C2 - 18689726
AN - SCOPUS:52949124867
SN - 0953-8178
VL - 20
SP - 1299
EP - 1311
JO - International immunology
JF - International immunology
IS - 10
ER -