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The classic signalling and trans‐signalling of interleukin‐6 are both injurious in podocyte under high glucose exposure

机译:在高糖暴露下,白细胞介素6的经典信号传导和反信号转导都对足细胞有害

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Interleukin‐6 (IL‐6) is a multifunctional cytokine that employs IL‐6 classic and trans‐signalling pathways, and these two signal channels execute different or even opposite effects in certain diseases. As a cardinal event of diabetic kidney disease (DKD), whether the podocyte abnormalities are associated with IL‐6 signalling, especially classic or trans‐signalling respectively, remains unclear. In this study, we identified that the circulatory IL‐6, soluble IL‐6R (sIL‐6R) and soluble glycoprotein 130 (sgp130) levels are elevated in patients with DKD. The expressions of membrane‐bound IL‐6R (mIL‐6R), sIL‐6R and gp130 are enhanced in kidney cortex of diabetic mice accompanying with activated STAT3 by tyrosine 705 residue phosphorylation, while not serine 727. Above data infer both classic signalling and trans‐signalling of IL‐6 are activated during DKD. In cultured podocyte, high glucose (HG) up‐regulates the expression of mIL‐6R and gp130, as well as STAT3 tyrosine 705 phosphorylation, in a time‐dependent manner. Entirely blocking IL‐6 signalling by gp130 shRNA, gp130 or IL‐6 neutralizing antibodies attenuates HG‐induced podocyte injury. Interestingly, either inhibiting IL‐6 classic signalling by mIL‐6R shRNA or suppressing its trans‐signalling using sgp130 protein dramatically alleviates HG‐induced podocyte injury, suggesting both IL‐6 classic signalling and trans‐signalling play a detrimental role in HG‐induced podocyte injury. Additionally, activation of IL‐6 classic or trans‐signalling aggravates podocyte damage in vitro. In summary, our observations demonstrate that the activation of either IL‐6 classic or trans‐signalling advances podocyte harming under hyperglycaemia. Thus, suppressing IL‐6 classic and trans‐signalling simultaneously may be more beneficial in podocyte protection and presents a novel therapeutic target for DKD.
机译:白介素-6(IL-6)是一种多功能的细胞因子,采用IL-6经典和跨信号通路,这两种信号通道在某些疾病中具有不同甚至相反的作用。作为糖尿病肾病(DKD)的主要事件,尚不清楚足细胞异常与IL-6信号传导有关,尤其是经典信号或跨信号传导。在这项研究中,我们发现DKD患者的循环IL-6,可溶性IL-6R(sIL-6R)和可溶性糖蛋白130(sgp130)水平升高。酪氨酸705残基的磷酸化使STAT3活化的糖尿病小鼠肾皮质中膜结合IL-6R(mIL-6R),sIL-6R和gp130的表达增强,而丝氨酸727则不增强。 DKD期间会激活IL-6的跨信号传递。在培养的足细胞中,高葡萄糖(HG)以时间依赖性方式上调mIL-6R和gp130的表达以及STAT3酪氨酸705的磷酸化。通过gp130 shRNA,gp130或IL-6中和抗体完全阻断IL-6信号传导可减轻HG诱导的足细胞损伤。有趣的是,通过mIL-6R shRNA抑制IL-6经典信号传导或使用sgp130蛋白抑制其反信号转导均可显着减轻HG诱导的足细胞损伤,这表明IL-6经典信号传导和反信号转导在HG诱导的过程中均起有害作用。足细胞损伤。此外,IL-6经典或跨信号激活在体外会加剧足细胞损伤。总而言之,我们的观察结果表明,在高血糖症下,IL-6经典或跨信号转导的激活会促进足细胞的损害。因此,同时抑制IL-6经典和跨信号转导可能对足细胞保护更为有益,并为DKD提供了新的治疗靶标。

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