Critical Role for Kit-mediated Src Kinase But Not PI 3-Kinase Signaling in Pro T and Pro B Cell Development

Author:

Agosti Valter1,Corbacioglu Selim1,Ehlers Imke1,Waskow Claudia2,Sommer Gunhild1,Berrozpe Georgina1,Kissel Holger1,Tucker Christine M.1,Manova Katia1,Moore Malcolm A.S.34,Rodewald Hans-Reimer2,Besmer Peter14

Affiliation:

1. Developmental Biology

2. Department for Immunology, University of Ulm, D-89070 Ulm, Germany

3. Cell Biology Programs, Sloan-Kettering Institute

4. Cornell University Graduate School of Medical Sciences, New York, NY 10021

Abstract

The Kit receptor functions in hematopoiesis, lymphocyte development, gastrointestinal tract motility, melanogenesis, and gametogenesis. To investigate the roles of different Kit signaling pathways in vivo, we have generated knock-in mice in which docking sites for PI 3-kinase (KitY719) or Src kinase (KitY567) have been mutated. Whereas steady-state hematopoiesis is normal in KitY719F/Y719F and KitY567F/Y567F mice, lymphopoiesis is affected differentially. The KitY567F mutation, but not the KitY719F mutation, blocks pro T cell and pro B cell development in an age-dependent manner. Thus, the Src family kinase, but not the PI 3-kinase docking site in Kit, mediates a critical signal for lymphocyte development. In agreement with these results, treatment of normal mice with the Kit tyrosine kinase inhibitor imatinib (Gleevec®) leads to deficits in pro T and pro B cell development, similar to those seen in KitY567F/Y567F and KitW/W mice. The two mutations do not affect embryonic gametogenesis but the KitY719F mutation blocks spermatogenesis at the spermatogonial stages and in contrast the KitY567F mutation does not affect this process. Therefore, Kit-mediated PI 3-kinase signaling and Src kinase family signaling is highly specific for different cellular contexts in vivo.

Publisher

Rockefeller University Press

Subject

Immunology,Immunology and Allergy

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