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PKCα 介导的二酰基甘油激酶 ζ MARCKS 结构域磷酸化通过调节与 Rac1 和 RhoA 的相互作用来切换细胞迁移模式。

PKCα-mediated phosphorylation of the diacylglycerol kinase ζ MARCKS domain switches cell migration modes by regulating interactions with Rac1 and RhoA.

机构信息

Department of Cellular and Molecular Medicine, University of Ottawa, Ottawa, Ontario, Canada; Centre for Neuromuscular Disease, University of Ottawa, Ottawa, Ontario, Canada.

Centre for Neuromuscular Disease, University of Ottawa, Ottawa, Ontario, Canada; Molecular Medicine Program, Ottawa Health Research Institute, Ottawa, Ontario, Canada; Department of Biochemistry, Microbiology and Immunology, University of Ottawa, Ottawa, Ontario, Canada.

出版信息

J Biol Chem. 2021 Jan-Jun;296:100516. doi: 10.1016/j.jbc.2021.100516. Epub 2021 Mar 4.

Abstract

Cells can switch between Rac1 (lamellipodia-based) and RhoA (blebbing-based) migration modes, but the molecular mechanisms regulating this shift are not fully understood. Diacylglycerol kinase ζ (DGKζ), which phosphorylates diacylglycerol to yield phosphatidic acid, forms independent complexes with Rac1 and RhoA, selectively dissociating each from their common inhibitor RhoGDI. DGKζ catalytic activity is required for Rac1 dissociation but is dispensable for RhoA dissociation; instead, DGKζ stimulates RhoA release via a kinase-independent scaffolding mechanism. The molecular determinants that mediate the selective targeting of DGKζ to Rac1 or RhoA signaling complexes are unknown. Here, we show that protein kinase Cα (PKCα)-mediated phosphorylation of the DGKζ MARCKS domain increased DGKζ association with RhoA and decreased its interaction with Rac1. The same modification also enhanced DGKζ interaction with the scaffold protein syntrophin. Expression of a phosphomimetic DGKζ mutant stimulated membrane blebbing in mouse embryonic fibroblasts and C2C12 myoblasts, which was augmented by inhibition of endogenous Rac1. DGKζ expression in differentiated C2 myotubes, which have low endogenous Rac1 levels, also induced substantial membrane blebbing via the RhoA-ROCK pathway. These events were independent of DGKζ catalytic activity, but dependent upon a functional C-terminal PDZ-binding motif. Rescue of RhoA activity in DGKζ-null cells also required the PDZ-binding motif, suggesting that syntrophin interaction is necessary for optimal RhoA activation. Collectively, our results define a switch-like mechanism whereby DGKζ phosphorylation by PKCα plays a role in the interconversion between Rac1 and RhoA signaling pathways that underlie different cellular migration modes.

摘要

细胞可以在 Rac1(片状伪足)和 RhoA(起泡)迁移模式之间切换,但调节这种转变的分子机制尚未完全了解。二酰基甘油激酶 ζ(DGKζ)可将二酰基甘油磷酸化为磷酸脂,它与 Rac1 和 RhoA 形成独立的复合物,选择性地将两者从其共同抑制剂 RhoGDI 上分离。DGKζ 的催化活性对于 Rac1 的解离是必需的,但对于 RhoA 的解离是可有可无的;相反,DGKζ 通过激酶非依赖性支架机制刺激 RhoA 的释放。介导 DGKζ 对 Rac1 或 RhoA 信号复合物选择性靶向的分子决定因素尚不清楚。在这里,我们表明蛋白激酶 Cα(PKCα)介导的 DGKζ MARCKS 结构域磷酸化增加了 DGKζ 与 RhoA 的结合,并减少了其与 Rac1 的相互作用。同样的修饰也增强了 DGKζ 与支架蛋白肌联蛋白的相互作用。表达磷酸模拟 DGKζ 突变体能刺激小鼠胚胎成纤维细胞和 C2C12 成肌细胞的膜起泡,而内源性 Rac1 的抑制则增强了这一作用。在分化的 C2 肌管中表达 DGKζ,由于内源性 Rac1 水平较低,也通过 RhoA-ROCK 途径诱导大量膜起泡。这些事件与 DGKζ 的催化活性无关,但依赖于一个功能完整的 C 末端 PDZ 结合基序。DGKζ 缺失细胞中 RhoA 活性的恢复也需要 PDZ 结合基序,这表明肌联蛋白的相互作用对于最佳的 RhoA 激活是必需的。总的来说,我们的结果定义了一种类似开关的机制,PKCα 对 DGKζ 的磷酸化在 Rac1 和 RhoA 信号通路之间的转换中发挥作用,这两种信号通路是不同细胞迁移模式的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/91cf/8042443/b72c73481918/gr1.jpg

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