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Stimulus-Specific Distinctions in Spatial and Temporal Dynamics of Stress-Activated Protein Kinase Kinase Kinases Revealed by a Fluorescence Resonance Energy Transfer Biosensor▿

机译:荧光共振能量转移生物传感器揭示的应激激活的蛋白激酶激酶激酶的时空动力学中的刺激特定区别▿

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摘要

The stress-activated protein kinases (SAPKs), namely, p38 and JNK, are members of the mitogen-activated protein kinase family and are important determinants of cell fate when cells are exposed to environmental stresses such as UV and osmostress. SAPKs are activated by SAPK kinases (SAP2Ks), which are in turn activated by various SAP2K kinases (SAP3Ks). Because conventional methods, such as immunoblotting using phospho-specific antibodies, measure the average activity of SAP3Ks in a cell population, the intracellular dynamics of SAP3K activity are largely unknown. Here, we developed a reporter of SAP3K activity toward the MKK6 SAP2K, based on fluorescence resonance energy transfer, that can uncover the dynamic behavior of SAP3K activation in cells. Using this reporter, we demonstrated that SAP3K activation occurs either synchronously or asynchronously among a cell population and in different cellular compartments in single cells, depending on the type of stress applied. In particular, SAP3Ks are activated by epidermal growth factor and osmostress on the plasma membrane, by anisomycin and UV in the cytoplasm, and by etoposide in the nucleus. These observations revealed previously unknown heterogeneity in SAPK responses and supplied answers to the question of the cellular location in which various stresses induce stimulus-specific SAPK responses.
机译:应力激活的蛋白激酶(SAPKs),即p38和JNK,是促分裂原激活的蛋白激酶家族的成员,并且当细胞暴露于环境压力(例如紫外线和渗透压)时,是细胞命运的重要决定因素。 SAPK由SAPK激酶(SAP2K)激活,而SAPK激酶又由各种SAP2K激酶(SAP3K)激活。因为常规方法(例如使用磷酸化特异性抗体的免疫印迹法)测量细胞群体中SAP3K的平均活性,所以SAP3K活性的细胞内动力学在很大程度上是未知的。在这里,我们基于荧光共振能量转移,开发了一个针对MKK6 SAP2K的SAP3K活性的报告子,该报告子可以揭示细胞中SAP3K激活的动态行为。使用此报告者,我们证明了SAP3K激活可以在细胞群体之间以及在单个细胞的不同细胞区室中同步或异步发生,具体取决于施加的压力类型。特别是,SAP3Ks被表皮生长因子和质膜上的渗透压,细胞质中的茴香霉素和紫外线以及细胞核中的依托泊苷激活。这些观察结果揭示了SAPK反应中以前未知的异质性,并为各种应激诱导刺激特异性SAPK反应的细胞位置问题提供了答案。

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