The cytoplasmic protein tyrosine kinase Tec has been proposed to have important functions in hematopoiesis and lymphocyte signal transduction. Here we show that Tec-deficient mice developed normally and had no major phenotypic alterations of the immune system. To reveal potential compensatory roles of other Tec kinases such as Bruton's tyrosine kinase (Btk), Tec/Btk double-deficient mice were generated. These mice exhibited a block at the B220+CD43+ stage of B cell development and displayed a severe reduction of peripheral B cell numbers, particularly immunoglobulin (Ig)MloIgDhi B cells. Although Tec/Btknull mice were able to form germinal centers, the response to T cell–dependent antigens was impaired. Thus, Tec and Btk together have an important role both during B cell development and in the generation and/or function of the peripheral B cell pool. The ability of Tec to compensate for Btk may also explain phenotypic differences in X-linked immunodeficiency (xid) mice compared with human X-linked agammaglobulinemia (XLA) patients.
Severe B Cell Deficiency in Mice Lacking the Tec Kinase Family Members Tec and Btk
Abbreviations used in this paper: A-MuLV, Abelson murine leukemia virus; APC, allophycocyanin; BCR, B cell receptor; bio, biotin; BM, bone marrow; Btk, Bruton's tyrosine kinase; ECL, enhanced chemiluminescence; ES, embryonic stem; PH, Pleckstrin homology; PTK, protein tyrosine kinase; SH, src homology; TD, thymus-dependent; TH, Tec homology; TI-II, thymus-independent type II; xid, X-linked immunodeficiency; XLA, X-linked agammaglobulinemia.
Wilfried Ellmeier, Steffen Jung, Mary Jean Sunshine, Farah Hatam, Yang Xu, David Baltimore, Hiroyuki Mano, Dan R. Littman; Severe B Cell Deficiency in Mice Lacking the Tec Kinase Family Members Tec and Btk. J Exp Med 4 December 2000; 192 (11): 1611–1624. doi: https://doi.org/10.1084/jem.192.11.1611
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