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A non-canonical function of eukaryotic elongation factor 1A1: Regulation of interleukin-6 expression

机译:真核生物延伸因子1A1的非规范功能:白介素6表达的调节。

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Interleukin-6 is one of the most prominent triggers of inflammatory processes. We have shown recently that heteroarylketones (HAKs) interfere with stimulated interleukin-6 expression in astrocytes by suppression of STAT3 phosphorylation at serine 727. Surprisingly, this effect is not based on the inhibition of STAT3-relevant kinases. Therefore, we here used the structurally modified HAK compound biotin-HAK-3 in a reverse chemical approach to identify the relevant molecular target in UV-mediated cross-linking experiments. Employing streptavidin-specific 2D-immunoblotting followed by mass spectrometry we identified nine proteins putatively interacting with biotin-HAK-3. After co-immunoprecipitation, co-immunofluorescence, surface plasmon resonance analyses and RNAi-mediated knock-down, the eukaryotic elongation factor 1A1 (eEF1A1) was verified as the relevant target of HAK bioactivity. eEF1A1 forms complexes with STAT3 and PKCδ, which are crucial for STAT3S727 phosphorylation and for NF-κB/STAT3-enhanced interleukin-6 expression. Furthermore, the intracellular HAK accumulation is strongly dependent on eEF1A1 expression. Taken together, the results reveal a novel molecular mechanism for a non-canonical role of eEF1A1 in signal transduction via direct modulation of kinase-dependent phosphorylation events.
机译:白介素6是炎症过程最主要的触发因素之一。我们最近发现,杂芳基酮(HAKs)通过抑制丝氨酸727处的STAT3磷酸化来干扰星形胶质细胞中受激白介素6的表达。令人惊讶的是,这种作用并非基于抑制STAT3相关激酶。因此,我们在反向化学方法中使用结构修饰的HAK化合物生物素HAK-3来鉴定UV介导的交联实验中的相关分子靶标。利用链霉亲和素特异性的2D免疫印迹技术,然后进行质谱分析,我们鉴定了9种可能与生物素HAK-3相互作用的蛋白质。经过共同免疫沉淀,共同免疫荧光,表面等离振子共振分析和RNAi介导的敲除后,真核生物延伸因子1A1(eEF1A1)被确认为HAK生物活性的相关目标。 eEF1A1与STAT3和PKCδ形成复合物,这对于STAT3S727磷酸化和NF-κB/ STAT3增强的白介素6表达至关重要。此外,细胞内HAK积累强烈依赖eEF1A1表达。综上所述,结果揭示了通过直接调节激酶依赖性磷酸化事件,eEF1A1在信号转导中发挥非典型作用的新型分子机制。

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