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Publication : Genetic evidence for critical roles of P38α protein in regulating mast cell differentiation and chemotaxis through distinct mechanisms.

First Author  Hu P Year  2012
Journal  J Biol Chem Volume  287
Issue  24 Pages  20258-69
PubMed ID  22518842 Mgi Jnum  J:186514
Mgi Id  MGI:5432459 Doi  10.1074/jbc.M112.358119
Citation  Hu P, et al. (2012) Genetic evidence for critical roles of P38alpha protein in regulating mast cell differentiation and chemotaxis through distinct mechanisms. J Biol Chem 287(24):20258-69
abstractText  Mast cells mediate a range of immune responses. However, the mechanisms that contribute to their development remain poorly understood. Here, using a P38alpha conditional knockout system, we provide evidence to suggest that P38alpha plays critical roles in regulating mast cell differentiation and migration via distinct mechanisms. Induced deletion of P38alpha in bone marrow cells retards the maturation of mast cells in part by inhibiting the activation of cAMP response element-binding protein and expression of microphthalmia-associated transcription factor, which encourages the generation of basophils over mast cells. In fully differentiated mast cells, absence of P38alpha inhibits stem cell factor-induced activation of Akt and ERK, which is associated with reduced chemotaxis. In vivo, conditional deletion of P38alpha results in reduced numbers of mast cells in certain tissues and a failure to reconstitute these cells in W(sh) mice transplanted with P38alpha(-/-) Lin(-)c-kit(+)Sca-1(+) (LKS(+)) cells. Our findings suggest that P38alpha plays a dual role in mast cell development by regulating IL-3-induced differentiation of mast cell progenitor cells as well as by regulating stem cell factor-induced migration of fully differentiated mast cells.
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