首页> 美国卫生研究院文献>Molecular and Cellular Biology >The Steel/W transduction pathway: kit autophosphorylation and its association with a unique subset of cytoplasmic signaling proteins is induced by the Steel factor.
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The Steel/W transduction pathway: kit autophosphorylation and its association with a unique subset of cytoplasmic signaling proteins is induced by the Steel factor.

机译:Steel / W转导途径:试剂盒自身磷酸化及其与细胞质信号蛋白独特子集的关联是由Steel因子诱导的。

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摘要

The W/c-kit and Steel loci respectively encode a receptor tyrosine kinase (Kit) and its extracellular ligand, Steel factor, which are essential for the development of hematopoietic, melanocyte, and germ cell lineages in the mouse. To determine the biochemical basis of the Steel/W developmental pathway, we have investigated the response of the Kit tyrosine kinase and several potential cytoplasmic targets to stimulation with Steel in mast cells derived from normal and mutant W mice. In normal mast cells, Steel induces Kit to autophosphorylate on tyrosine and bind to phosphatidylinositol 3'-kinase (PI3K) and phospholipase C-gamma 1 but not detectably to Ras GTPase-activating protein. Additionally, we present evidence that Kit tyrosine phosphorylation acts as a switch to promote complex formation with PI3K. In mast cells from mice homozygous for the W42 mutant allele, Kit is not tyrosine phosphorylated and fails to bind PI3K following Steel stimulation. In contrast, in the transformed mast cell line P815, Kit is constitutively phosphorylated and binds to PI3K in the absence of ligand. These results suggest that Kit autophosphorylation and its physical association with a unique subset of cytoplasmic signaling proteins are critical for mammalian development.
机译:W / c-kit和Steel位点分别编码受体酪氨酸激酶(Kit)及其细胞外配体Steel因子,这对于小鼠造血,黑素细胞和生殖细胞谱系的发育至关重要。为了确定Steel / W发育途径的生化基础,我们研究了Kit酪氨酸激酶和几种潜在的细胞质靶标对正常和突变W小鼠的肥大细胞中Steel刺激的反应。在正常的肥大细胞中,Steel诱导Kit在酪氨酸上自磷酸化,并与磷脂酰肌醇3'-激酶(PI3K)和磷脂酶C-γ1结合,但与Ras GTPase活化蛋白未结合。另外,我们提供了Kit酪氨酸磷酸化作为促进PI3K与复合物形成的开关的证据。在来自W42突变体等位基因纯合子的小鼠肥大细胞中,Kit没有被酪氨酸磷酸化,并且在钢刺激后不能结合PI3K。相反,在转化的肥大细胞系P815中,Kit被组成性磷酸化并在不存在配体的情况下与PI3K结合。这些结果表明,试剂盒自身磷酸化及其与细胞质信号蛋白独特子集的物理联系对于哺乳动物的发育至关重要。

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