SIGNAL TRANSDUCTION BY NORMAL ISOFORMS AND W-MUTANT VARIANTS OF THE KIT RECEPTOR TYROSINE KINASE

被引:249
作者
REITH, AD
ELLIS, C
LYMAN, SD
ANDERSON, DM
WILLIAMS, DE
BERNSTEIN, A
PAWSON, T
机构
[1] UNIV TORONTO, DEPT MOLEC & MED GENET, TORONTO M5S 1A1, ONTARIO, CANADA
[2] MT SINAI HOSP, SAMUEL LUNENFELD RES INST, DIV MOLEC & DEV BIOL, TORONTO M5G 1X5, ONTARIO, CANADA
[3] IMMUNEX CORP, SEATTLE, WA 98101 USA
关键词
MOUSE DEVELOPMENT; KIT ISOFORMS; SIGNAL TRANSDUCTION; STEEL LOCUS; W-LOCUS;
D O I
10.1002/j.1460-2075.1991.tb07784.x
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Germline mutations at the Dominant White Spotting (W) and Steel (Sl) loci have provided conclusive genetic evidence that c-kit mediated signal transduction pathways are essential for normal mouse development. We have analysed the interactions of normal and mutant W/c-kit gene products with cytoplasmic signalling proteins, using transient c-kit expression assays in COS cells. In addition to the previously identified c-kit gene product (Kit+), a second normal Kit isoform (KitA+) containing an in-frame insertion, Gly-Asn-Asn-Lys, within the extracellular domain, was detected in murine mast cell cultures and mid-gestation placenta. Both Kit+ and KitA+ isoforms showed increased autophosphorylation and enhanced association with phosphatidylinositol (PI) 3' kinase and PLC-gamma-1, when stimulated with recombinant soluble Steel factor. No association or increase in phosphorylation of GAP and two GAP-associated proteins, p62 and p190, was observed. The two isoforms had distinct activities in the absence of exogenous soluble Steel factor; Kit+, but not KitA+, showed constitutive tyrosine phosphorylation that was accompanied by a low constitutive level of association with PI-3' kinase and PLC-gamma-1. Introduction of the point substitutions associated with W37 (Glu582 --> Lys) or W41 (Val831 --> Met) mutant alleles into c-kit expression constructs abolished (W37) or reduced (W41) the Steel factor-induced association of the Kit receptor with signalling proteins in a manner proportional to the overall severity of the corresponding W mutant phenotype. These data suggest a diversity of normal Kit signalling pathways and indicate that W mutant phenotypes result from primary defects in the Kit receptor that affect its interaction with cytoplasmic signalling proteins.
引用
收藏
页码:2451 / 2459
页数:9
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