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首页> 外文期刊>Cell death & disease. >MiRNA-210 modulates a nickel-induced cellular energy metabolism shift by repressing the iron–sulfur cluster assembly proteins ISCU1/2 in Neuro-2a cells
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MiRNA-210 modulates a nickel-induced cellular energy metabolism shift by repressing the iron–sulfur cluster assembly proteins ISCU1/2 in Neuro-2a cells

机译:MiRNA-210通过抑制Neuro-2a细胞中的铁硫簇装配蛋白ISCU1 / 2来调节镍诱导的细胞能量代谢转移

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The cellular energy metabolism shift, characterized by the inhibition of oxidative phosphorylation (OXPHOS) and enhancement of glycolysis, is involved in nickel-induced neurotoxicity. MicroRNA-210 (miR-210) is regulated by hypoxia-inducible transcription factor-1 α (HIF-1 α ) under hypoxic conditions and controls mitochondrial energy metabolism by repressing the iron–sulfur cluster assembly protein (ISCU1/2). ISCU1/2 facilitates the assembly of iron–sulfur clusters (ISCs), the prosthetic groups that are critical for mitochondrial oxidation-reduction reactions. This study aimed to investigate whether miR-210 modulates alterations in energy metabolism after nickel exposure through suppressing ISCU1/2 and inactivating ISCs-containing metabolic enzymes. We determined that NiCl 2 exposure leads to a significant accumulation of HIF-1 α , rather than HIF-1 β , in Neuro-2a cells. The miR-210 overexpression and ISCU1/2 downregulation was observed in a dose- and time-dependent manner. The gain-of-function and loss-of-dysfunction assays revealed that miR-210 mediated the ISCU1/2 suppression, energy metabolism alterations, and ISC-containing metabolic enzyme inactivation after nickel exposure. In addition, the impact of miR-210 on ISC-containing metabolic enzymes was independent from cellular iron regulation. Overall, these data suggest that repression of miR-210 on ISCU1/2 may contribute to HIF-1 α -triggered alterations in energy metabolism after nickel exposure. A better understanding of how nickel impacts cellular energy metabolism may facilitate the elucidation of the mechanisms by which nickel affects the human health.
机译:细胞能量代谢转移的特征是抑制氧化磷酸化(OXPHOS)和增强糖酵解,参与镍诱导的神经毒性。 MicroRNA-210(miR-210)在缺氧条件下受缺氧诱导转录因子1α(HIF-1α)调节,并通过抑制铁硫簇装配蛋白(ISCU1 / 2)来控制线粒体能量代谢。 ISCU1 / 2促进了铁硫簇(ISC)的组装,这些簇对于线粒体的氧化还原反应至关重要。这项研究旨在研究miR-210是否通过抑制ISCU1 / 2和使含ISC的代谢酶失活来调节镍暴露后能量代谢的变化。我们确定NiCl 2暴露导致Neuro-2a细胞中HIF-1α而不是HIF-1β大量积累。观察到miR-210过表达和ISCU1 / 2下调呈剂量和时间依赖性。功能获得和功能丧失检测结果表明,miR-210在镍暴露后介导了ISCU1 / 2抑制,能量代谢改变和含ISC的代谢酶失活。此外,miR-210对含ISC的代谢酶的影响与细胞铁调节无关。总的来说,这些数据表明在ISCU1 / 2上抑制miR-210可能导致HIF-1α触发了镍暴露后能量代谢的改变。对镍如何影响细胞能量代谢的更好理解可能有助于阐明镍影响人体健康的机制。

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