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Src 介导的 βPix-b 磷酸化调节树突棘形态发生。

Src-mediated phosphorylation of βPix-b regulates dendritic spine morphogenesis.

机构信息

School of Biological Sciences, Seoul National University, Seoul 08826, Republic of Korea.

Department of Pharmacology, College of Medicine, Institute of Natural Medicine, Hallym University, Chuncheon 24252, Republic of Korea.

出版信息

J Cell Sci. 2019 Feb 25;132(5):jcs224980. doi: 10.1242/jcs.224980.

Abstract

PAK-interacting guanine nucleotide exchange factor (βPix; also known as Arhgef7) has been implicated in many actin-based cellular processes, including spine morphogenesis in neurons. However, the molecular mechanisms by which βPix controls spine morphology remain elusive. Previously, we have reported the expression of several alternative spliced βPix isoforms in the brain. Here, we report a novel finding that the b isoform of βPix (βPix-b) mediates the regulation of spine and synapse formation. We found that βPix-b, which is mainly expressed in neurons, enhances spine and synapse formation through preferential localization at spines. In neurons, glutamate treatment efficiently stimulates Rac1 GEF activity of βPix-b. The glutamate stimulation also promotes Src-mediated phosphorylation of βPix-b in both an AMPA receptor- and NMDA receptor-dependent manner. Tyrosine 598 (Y598) of βPix-b is identified as the major Src-mediated phosphorylation site. Finally, Y598 phosphorylation of βPix-b enhances its Rac1 GEF activity that is critical for spine and synapse formation. In conclusion, we provide a novel mechanism by which βPix-b regulates activity-dependent spinogenesis and synaptogenesis via Src-mediated phosphorylation.

摘要

PAK 相互作用鸟嘌呤核苷酸交换因子(βPix;也称为 Arhgef7)参与许多基于肌动蛋白的细胞过程,包括神经元中的脊柱形态发生。然而,βPix 控制脊柱形态的分子机制仍不清楚。以前,我们已经报道了大脑中几种替代剪接βPix 异构体的表达。在这里,我们报告了一个新的发现,即βPix 的 b 异构体(βPix-b)介导了脊柱和突触形成的调节。我们发现,βPix-b 主要在神经元中表达,通过优先定位于脊柱来增强脊柱和突触的形成。在神经元中,谷氨酸处理有效地刺激βPix-b 的 Rac1 GEF 活性。谷氨酸刺激还以 AMPA 受体和 NMDA 受体依赖性方式促进 Src 介导的βPix-b 磷酸化。βPix-b 的酪氨酸 598(Y598)被确定为 Src 介导的主要磷酸化位点。最后,βPix-b 的 Y598 磷酸化增强了其 Rac1 GEF 活性,这对于脊柱和突触的形成至关重要。总之,我们提供了一种新的机制,即βPix-b 通过 Src 介导的磷酸化调节活性依赖性 spinogenesis 和 synaptogenesis。

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