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Endocytosis of somatodendritic NCKX2 is regulated by Src family kinase-dependent tyrosine phosphorylation

机译:Src家族激酶依赖性酪氨酸磷酸化作用调节树突状细胞NCKX2的内吞作用

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摘要

We have previously reported that the surface expression of K+-dependent Na+/Ca2+ exchanger 2 (NCKX2) in the somatodendritic compartment is kept low by constitutive endocytosis, which results in the polarization of surface NCKX2 to the axon. Clathrin-mediated endocytosis is initiated by interaction of the μ subunit of adaptor protein complex 2 (AP-2) with the canonical tyrosine motif (YxxΦ) of a target molecule. We examined whether endocytosis of NCKX2 involves two putative tyrosine motifs (365YGKL and 371YDTM) in the cytoplasmic loop of NCKX2. Coimmunoprecipitation assay revealed that the 365YGKL motif is essential for the interaction with the μ subunit of AP-2 (AP2M1). Consistently, either overexpression of NCKX2-Y365A mutant or knockdown of AP2M1 in cultured hippocampal neurons significantly reduced the internalization of NCKX2 from the somatodendritic surface and thus abolished the axonal polarization of surface NCKX2. Next, we tested whether the interaction between the tyrosine motif and AP2M1 is regulated by phosphorylation of the 365th tyrosine residue (Tyr-365). Tyrosine phosphorylation of heterologously expressed NCKX2-WT, but not NCKX2-Y365A, was increased by carbachol (CCh) in PC-12 cells. The effect of CCh was inhibited by PP2, a Src family kinase (SFK) inhibitor. Moreover, PP2 facilitated the endocytosis of NCKX2 in both the somatodendritic and axonal compartments, suggesting that tyrosine phosphorylation of NCKX2 by SFK negatively regulates its endocytosis. Supporting this idea, activation of SFK enhanced the NCKX activity in the proximal dendrites of dentate granule cells (GCs). These results suggest that endocytosis of somatodendritic NCKX2 is regulated by SFK-dependent phosphorylation of Tyr-365.
机译:先前我们已经报道过,K + 依赖的Na + / Ca 2 + 交换子2(NCKX2)在树突状区的表面表达通过组成型内吞作用保持低水平,导致表面NCKX2极化到轴突。网格蛋白介导的内吞作用是通过衔接蛋白复合物2(AP-2)的μ亚基与目标分子的典型酪氨酸基序(YxxΦ)相互作用而引发的。我们检查了NCKX2的胞吞作用是否在NCKX2的胞质环中涉及两个假定的酪氨酸基序( 365 YGKL和 371 YDTM)。免疫共沉淀实验表明, 365 YGKL基序对于与AP-2(AP2M1)的μ亚基相互作用至关重要。一致地,在培养的海马神经元中NCKX2-Y365A突变体的过表达或AP2M1的敲低显着降低了来自体树突状表面的NCKX2的内在化,从而消除了表面NCKX2的轴突极化。接下来,我们测试了酪氨酸基序和AP2M1之间的相互作用是否受第365个酪氨酸残基(Tyr-365)磷酸化的调控。在PC-12细胞中,卡巴胆碱(CCh)增强了异源表达的NCKX2-WT而不是NCKX2-Y365A的酪氨酸磷酸化。 CCh的作用被Src家族激酶(SFK)抑制剂PP2抑制。此外,PP2促进了树突状和轴突区室中NCKX2的内吞作用,表明SFK对NCKX2的酪氨酸磷酸化负调控其内吞作用。支持该想法的是,SFK的激活增强了齿状颗粒细胞(GC)的近端树突中的NCKX活性。这些结果表明,体细胞树状NCKX2的内吞作用受Tyr-365的SFK依赖性磷酸化的调节。

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