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c-Jun 通过 BATF/SETD5/ARHGEF3 轴靶向 miR-451a 调控 HQ 诱导的红系分化抑制。

c-Jun targets miR-451a to regulate HQ-induced inhibition of erythroid differentiation via the BATF/SETD5/ARHGEF3 axis.

机构信息

Department of Occupational and Environmental Health, School of Public Health, Sun Yat-sen University, Guangzhou 510080, China; Joint International Research Laboratory of Environment and Health, Ministry of Education, School of Public Health, Sun Yat-sen University, Guangzhou 510080, China.

Department of Hospital Acquired Infection Control and Public Health Management, The Seventh Affiliated Hospital, Sun Yat-sen University, Shenzhen 517108, China.

出版信息

Toxicology. 2024 Jun;505:153843. doi: 10.1016/j.tox.2024.153843. Epub 2024 May 25.

Abstract

Benzene, a widely used industrial chemical, has been clarified to cause hematotoxicity. Our previous study suggested that miR-451a may play a role in benzene-induced impairment of erythroid differentiation. However, the mechanism underlying remains unclear. In this study, we explored the role of miR-451a and its underlying mechanisms in hydroquinone (HQ)-induced suppression of erythroid differentiation in K562 cells. 0, 1.0, 2.5, 5.0, 10.0, and 50 μM HQ treatment of K562 cells resulted in a dose-dependent inhibition of erythroid differentiation, as well as the expression of miR-451a. Bioinformatics analysis was conducted to predict potential target genes of miR-451a and dual-luciferase reporter assays confirmed that miR-451a can directly bind to the 3'-UTR regions of BATF, SETD5, and ARHGEF3 mRNAs. We further demonstrated that over-expression or down-regulation of miR-451a altered the expression of BATF, SETD5, and ARHGEF3, and also modified erythroid differentiation. In addition, BATF, SETD5, and ARHGEF3 were verified to play a role in HQ-induced inhibition of erythroid differentiation in this study. Knockdown of SETD5 and ARHGEF3 reversed HQ-induced suppression of erythroid differentiation while knockdown of BATF had the opposite effect. On the other hand, we also identified c-Jun as a potential transcriptional regulator of miR-451a. Forced expression of c-Jun increased miR-451a expression and reversed the inhibition of erythroid differentiation induced by HQ, whereas knockdown of c-Jun had the opposite effect. And the binding site of c-Jun and miR-451a was verified by dual-luciferase reporter assay. Collectively, our findings indicate that miR-451a and its downstream targets BATF, SETD5, and ARHGEF3 are involved in HQ-induced erythroid differentiation disorder, and c-Jun regulates miR-451a as a transcriptional regulator in this process.

摘要

苯是一种广泛使用的工业化学品,已被明确为引起血液毒性的物质。我们之前的研究表明,miR-451a 可能在苯诱导的红细胞分化损伤中发挥作用。然而,其潜在机制尚不清楚。在这项研究中,我们探讨了 miR-451a 及其在 HQ 诱导的 K562 细胞红细胞分化抑制中的作用机制。0、1.0、2.5、5.0、10.0 和 50µM HQ 处理 K562 细胞导致红细胞分化呈剂量依赖性抑制,miR-451a 的表达也随之下降。通过生物信息学分析预测 miR-451a 的潜在靶基因,并通过双荧光素酶报告基因实验证实 miR-451a 可直接结合 BATF、SETD5 和 ARHGEF3 mRNA 的 3'-UTR 区域。我们进一步证明,过表达或下调 miR-451a 改变了 BATF、SETD5 和 ARHGEF3 的表达,并修饰了红细胞分化。此外,在这项研究中还证实 BATF、SETD5 和 ARHGEF3 参与了 HQ 诱导的红细胞分化抑制。下调 SETD5 和 ARHGEF3 逆转了 HQ 诱导的红细胞分化抑制,而下调 BATF 则产生了相反的效果。另一方面,我们还发现 c-Jun 可能是 miR-451a 的潜在转录调控因子。强制表达 c-Jun 增加了 miR-451a 的表达并逆转了 HQ 诱导的红细胞分化抑制,而敲低 c-Jun 则产生了相反的效果。通过双荧光素酶报告基因实验验证了 c-Jun 和 miR-451a 的结合位点。综上所述,我们的研究结果表明,miR-451a 及其下游靶基因 BATF、SETD5 和 ARHGEF3 参与了 HQ 诱导的红细胞分化障碍,c-Jun 作为转录调控因子调节 miR-451a 在该过程中的表达。

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