Both the phosphoinositide and receptor binding activities of Dab1 are required for Reelin-stimulated Dab1 tyrosine phosphorylation

Mei Xu , Lionel Arnaud , Jonathan A. Cooper
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引用次数: 17

Abstract

Reelin-stimulated tyrosine phosphorylation of the Dab1 adaptor protein is required during brain development for Reelin-dependent neuron positioning in the cerebral cortex and various other laminated regions. Dab1 contains an amino-terminal PTB/PI domain through which it can bind to Reelin receptors and membrane phosphoinositides. The relative contributions of these binding activities were unknown. Here, we identify a mutation in the PTB domain of Dab1 that inhibits membrane localization without inhibiting receptor binding. In neurons, this mutation reduces both basal and Reelin-stimulated Dab1 tyrosine phosphorylation. In contrast, a mutation that inhibits receptor binding reduces Reelin-stimulated but not basal tyrosine phosphorylation. These results support a model in which phospholipids recruit Dab1 to membranes but do not play a direct role in relaying the Reelin signal, while direct Dab1–receptor interaction is responsible for relaying the Reelin signal but not for membrane recruitment.

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reelin刺激的Dab1酪氨酸磷酸化需要Dab1的磷酸肌肽和受体结合活性
在大脑发育过程中,reelin刺激的酪氨酸磷酸化Dab1接头蛋白是大脑皮层和其他层压区域中依赖reelin的神经元定位所必需的。Dab1含有氨基末端PTB/PI结构域,可通过该结构域与Reelin受体和膜磷酸肌苷结合。这些结合活性的相对作用尚不清楚。在这里,我们在Dab1的PTB结构域中发现了一个突变,该突变抑制膜定位而不抑制受体结合。在神经元中,这种突变减少了基础和reelin刺激的Dab1酪氨酸磷酸化。相反,抑制受体结合的突变会减少reelin刺激的酪氨酸磷酸化,但不会减少基础酪氨酸磷酸化。这些结果支持了一个模型,即磷脂将Dab1招募到膜上,但不直接参与Reelin信号的传递,而直接的Dab1受体相互作用负责Reelin信号的传递,但不参与膜的募集。
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