Developmental defects of lymphoid cells in Jak3 kinase-deficient mice

被引:412
作者
Park, SY
Saijo, K
Takahashi, T
Osawa, M
Arase, H
Hirayama, N
Miyake, K
Nakauchi, H
Shirasawa, T
Saito, T
机构
[1] TOKYO METROPOLITAN INST GERONTOL,DEPT MOLEC PATHOL,ITABASHI KU,TOKYO 173,JAPAN
[2] UNIV TSUKUBA,SCH MED,DEPT IMMUNOL,TSUKUBA,IBARAKI 305,JAPAN
[3] NATL INST HLTH & NUTR,DEPT IMMUNOL,SHINJUKU KU,TOKYO 162,JAPAN
关键词
D O I
10.1016/1074-7613(95)90066-7
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
Jak3 is a tyrosine kinase mediating cytokine receptor signaling through the association with the common gamma chain of the cytokine receptors such as IL-2, IL-4, IL-7, IL-9, and IL-15. Unlike other members of the Jak family, the expression of Jak3 is highly restricted in hematopoietic cells. To elucidate in vivo function of Jak3, Jak3-deficient mice were generated by homologous recombination. Mice homozygous for Jak3 null mutation showed severe defects, specifically in lymphoid cells. B cell precursors in bone marrow, thymocytes, and both T and B cells in the spleen drastically decreased, although these defects were significantly recovered as aging occurred. Peripheral lymph nodes, NK cells, dendritic epidermal T cells, and intestinal intraepithelial gamma delta T cells were absent. Normal number of hematopoietic stem cells in bone marrow from Jak3-deficient mice and the similar capability to generate myeloid and erythroid colonies as wild-type mice indicated specific defects in lymphoid stem cells. Furthermore, the abnormal architecture of lymphoid organs suggested the involvement of Jak3 in the function of epithelial cells. T cells developed in the mutant mice did not respond to either IL-2, IL-4, or IL-7. These findings establish the crucial role of Jak3 in the development of lymphoid cells.
引用
收藏
页码:771 / 782
页数:12
相关论文
共 38 条
[21]  
possible link with the c-myc induction pathway, Immunity, 2, pp. 89-100, (1995)
[22]  
Miyazaki, Kawahara, Fujii, Nakagawa, Minami, Liu, Oishi, Silvennoinen, Witthuhn, Ihle, Taniguchi, Functional activation of Jak1 and Jak3 by selective association with IL-2 receptor subunit, Science, 266, pp. 1045-1047, (1994)
[23]  
Noguchi, Nakamura, Russell, Ziegler, Tsang, Cao, Leonard, Interleukin-2 receptor γ chain: a functional component of the interleukin-7 receptor, Science, 262, pp. 1877-1880, (1993)
[24]  
Noguchi, Yi, Rosenblatt, Filipovich, Adelstein, Modi, McBride, Leonard, Interleukin-2 receptor γ chain mutation results in X-linked severe combined immunodeficiency in humans, Cell, 73, pp. 147-157, (1993)
[25]  
Ohno, Aoe, Taki, Kitamura, Ishida, Rajewsky, Saito, Developmental and functional impairment of the T cell in mice lacking CD3ξ, EMBO J, 12, pp. 4357-4366, (1993)
[26]  
Peschon, Morrissey, Granstein, Ramsdell, Maraskovsky, Gliniak, Park, Ziegler, Williams, Ware, Meyer, Davison, Early lymphocyte expansion is severely impaired in interleukin 7 receptor-deficient mice, Journal of Experimental Medicine, 180, pp. 1955-1960, (1994)
[27]  
Russell, Keegan, Harada, Nakamura, Noguchi, Leland, Friedman, Miyajima, Puri, Paul, Leonard, Interleukin-2 receptor γ chain: a functional component of the interleukin-4 receptor, Science, 262, pp. 1880-1883, (1993)
[28]  
Russell, Johnston, Noguchi, Kawamura, Bacon, Friedmann, Berg, McVicar, Witthuhn, Silvennoinen, Goldman, Schmalstieg, Ihle, O'Shea, Leonard, Interaction of IL-2Rβ and γc Chains with Jak1 and Jak3: implication for XSCID and XCID, Science, 266, pp. 1042-1045, (1994)
[29]  
Sadlack, Merz, Schorle, Schimpl, Feller, Horak, Ulcerative colitis-like disease in mice with a disrupted interleukin-2 gene, Cell, 75, pp. 253-261, (1993)
[30]  
Sadlack, Kuhn, Schorle, Rajewsky, Muller, Horak, Developmental and proliferation of lymphocytes in mice deficient for both interleukin-2 and -4, Eur. J. Immunol., 24, pp. 281-284, (1994)