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钙介导的相互作用调节细胞外信号调节激酶(ERK)的亚细胞定位。

Calcium-Mediated Interactions Regulate the Subcellular Localization of Extracellular Signal-Regulated Kinases (ERKs).

作者信息

Chuderland Dana, Marmor Goldie, Shainskaya Alla, Seger Rony

机构信息

Department of Biological Regulation, The Weizmann Institute of Science, Rehovot, Israel.

Mass Spectroscopy Unit, The Weizmann Institute of Science, Rehovot, Israel.

出版信息

Cell Physiol Biochem. 2020 May 12;54(3):474-492. doi: 10.33594/000000231.

Abstract

BACKGROUND/AIMS: The subcellular localization of ERK1 and ERK2 (ERKs) in cells, which is important for proper signaling, may be regulated through protein-protein interactions. However, the proteins involved and the way they are regulated to affect localization is not entirely understood.

METHODS

In order to identify the interacting proteins upon varying conditions, we used co-immunoprecipitation of ERK, active ERK and its binding CRS mutant. In addition, we examined the effect of intracellular calcium on the binding using calcium chelators and ionophores, analyzing the binding using silver stain, mass spectrometry and immunoblotting. The effect of calcium on ERK localization was examined using immunofluorescent staining and Western blotting.

RESULTS

We found that inactive ERK2 interacts with a large number of proteins through its CRS/CD domain, whereas the phospho-ERK2 interacts with only few substrates. Varying calcium concentrations significantly modified the repertoire of ERK2-interacting proteins, of which many were identified. The effect of calcium on ERKs' interactions influenced also the localization of ERKs, as calcium chelators enhanced nuclear translocation, while elevated calcium levels prevented it. This effect of calcium was also apparent upon the physiological lysophosphatidic acid stimulation, where ERKs translocation was delayed compared to that induced by EGF in a calcium-dependent manner. In vitro translocation assay revealed that high calcium concentrations affect ERKs' translocation by preventing the shuttling machinery through the nuclear envelope, probably due to higher binding to nuclear pore proteins such as NUP153. These results are consistent with a model in which ERKs in quiescent cells are bound to several cytoplasmic proteins.

CONCLUSION

Upon stimulation, ERKs are phosphorylated and released from their cytoplasmic anchors to allow shuttling into the nucleus. This translocation is delayed when calcium levels are increased, and this modifies the localization of ERKs and therefore also their spatiotemporal regulation. Thus, calcium regulates ERKs localization, which is important for the compartmentalization of ERKs with their proper substrates, and thereby their signaling specificity.

摘要

背景/目的:细胞外调节蛋白激酶1和2(ERK1和ERK2,统称ERKs)在细胞内的亚细胞定位对于正确的信号传导很重要,其可能通过蛋白质-蛋白质相互作用来调节。然而,所涉及的蛋白质以及它们被调节以影响定位的方式尚未完全明确。

方法

为了鉴定在不同条件下相互作用的蛋白质,我们使用了ERK、活性ERK及其结合CRS突变体的免疫共沉淀。此外,我们使用钙螯合剂和离子载体研究了细胞内钙对结合的影响,并通过银染、质谱和免疫印迹分析结合情况。使用免疫荧光染色和蛋白质印迹法检测钙对ERK定位的影响。

结果

我们发现无活性的ERK2通过其CRS/CD结构域与大量蛋白质相互作用,而磷酸化的ERK2仅与少数底物相互作用。不同的钙浓度显著改变了与ERK2相互作用的蛋白质种类,其中许多已被鉴定。钙对ERKs相互作用的影响也影响了ERKs的定位,因为钙螯合剂增强了核转位,而钙水平升高则阻止了核转位。在生理溶血磷脂酸刺激下,钙的这种作用也很明显,与表皮生长因子诱导的情况相比,ERKs的转位在钙依赖的方式下被延迟。体外转位试验表明,高钙浓度通过阻止穿梭机制穿过核膜来影响ERKs的转位,这可能是由于与核孔蛋白如NUP153的结合增加。这些结果与静止细胞中的ERKs与几种细胞质蛋白结合的模型一致。

结论

受到刺激时,ERKs被磷酸化并从其细胞质锚定物中释放出来,以便穿梭进入细胞核。当钙水平升高时,这种转位会延迟,这会改变ERKs的定位,从而也改变它们的时空调节。因此,钙调节ERKs的定位,这对于ERKs与其合适底物的区室化以及它们的信号特异性很重要。

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