在实验性青光眼模型中,Müller 细胞中过表达内向整流钾通道 Kir4.1 或 Kir4.1 Tyr9 Asp 可发挥神经保护作用。

IF 5.9 2区 医学 Q2 CELL BIOLOGY
Neural Regeneration Research Pub Date : 2026-04-01 Epub Date: 2024-11-13 DOI:10.4103/NRR.NRR-D-24-00461
Fang Li, Zhen Li, Shuying Li, Hong Zhou, Yunhui Guo, Yongchen Wang, Bo Lei, Yanying Miao, Zhongfeng Wang
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引用次数: 0

摘要

内向整流钾通道Kir4.1的下调是诱导视网膜Müller细胞活化和与其他神经胶质细胞相互作用的关键步骤,而后者参与了青光眼视网膜神经节细胞的凋亡。因此,调节 Müller 细胞中 Kir4.1 的表达可能是减轻青光眼视网膜神经节细胞损伤的一种潜在策略。在这项研究中,我们确定了 Kir4.1 中七个预测的磷酸化位点,并构建了慢病毒表达系统,表达在每个位点发生突变的 Kir4.1,以防止磷酸化。随后,我们在体外和体内用 mGluR I 激动剂 DHPG 处理 Müller 胶质细胞,诱导 Kir4.1 或 Kir4.1 Tyr9Asp 过表达。我们发现,Kir4.1 和 Kir4.1 Tyr9Asp 的过表达都能抑制 Müller 神经胶质细胞的激活。随后,我们通过向大鼠前房注射微珠建立了慢性眼压模型,并在眼内过表达 Kir4.1 或 Kir4.1 Tyr9Asp,在体内观察到了与体外相似的 Müller 细胞结果。Kir4.1和Kir4.1 Tyr9Asp的过表达都抑制了Müller细胞的活化,调节了Bax/Bcl-2的平衡,降低了促炎因子(包括白细胞介素-1β和肿瘤坏死因子-α)的mRNA和蛋白水平。此外,我们还研究了 Kir4.1 和 Kir4.1 Tyr9Asp 过表达对 Müller 胶质细胞和小胶质细胞共培养系统中促炎因子释放的调节作用。在这种共培养系统中,我们观察到活化的 Müller 细胞中三磷酸腺苷浓度升高,转运体蛋白(小胶质细胞活化的标志物)水平升高,活化的 Müller 细胞诱导的小胶质细胞中白细胞介素-1β mRNA 和蛋白水平升高。在 Müller 细胞中过表达 Kir4.1 和 Kir4.1 Tyr9Asp 可逆转这些变化。Kir4.1 的过表达,而不是 Kir4.1 Tyr9Asp 的过表达,可减少活化的 Müller 细胞诱导的增殖性和迁移性小胶质细胞的数量。总之,这些结果表明,在青光眼的实验模型中,Kir4.1第九位的酪氨酸残基可能是视网膜中的一个功能调节位点。Kir4.1和Kir4.1 Tyr9Asp的过表达减轻了Müller细胞的活化,减少了ATP/P2X受体介导的神经胶质细胞之间的相互作用,抑制了小胶质细胞的活化,减少了促炎因子的合成和释放,从而改善了青光眼视网膜神经节细胞的凋亡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Overexpression of the inwardly rectifying potassium channel Kir4.1 or Kir4.1 Tyr 9 Asp in Müller cells exerts neuroprotective effects in an experimental glaucoma model.

JOURNAL/nrgr/04.03/01300535-202604000-00043/figure1/v/2025-06-30T060627Z/r/image-tiff Downregulation of the inwardly rectifying potassium channel Kir4.1 is a key step for inducing retinal Müller cell activation and interaction with other glial cells, which is involved in retinal ganglion cell apoptosis in glaucoma. Modulation of Kir4.1 expression in Müller cells may therefore be a potential strategy for attenuating retinal ganglion cell damage in glaucoma. In this study, we identified seven predicted phosphorylation sites in Kir4.1 and constructed lentiviral expression systems expressing Kir4.1 mutated at each site to prevent phosphorylation. Following this, we treated Müller glial cells in vitro and in vivo with the mGluR I agonist DHPG to induce Kir4.1 or Kir4.1 Tyr 9 Asp overexpression. We found that both Kir4.1 and Kir4.1 Tyr 9 Asp overexpression inhibited activation of Müller glial cells. Subsequently, we established a rat model of chronic ocular hypertension by injecting microbeads into the anterior chamber and overexpressed Kir4.1 or Kir4.1 Tyr 9 Asp in the eye, and observed similar results in Müller cells in vivo as those seen in vitro . Both Kir4.1 and Kir4.1 Tyr 9 Asp overexpression inhibited Müller cell activation, regulated the balance of Bax/Bcl-2, and reduced the mRNA and protein levels of pro-inflammatory factors, including interleukin-1β and tumor necrosis factor-α. Furthermore, we investigated the regulatory effects of Kir4.1 and Kir4.1 Tyr 9 Asp overexpression on the release of pro-inflammatory factors in a co-culture system of Müller glial cells and microglia. In this co-culture system, we observed elevated adenosine triphosphate concentrations in activated Müller cells, increased levels of translocator protein (a marker of microglial activation), and elevated interleukin-1β mRNA and protein levels in microglia induced by activated Müller cells. These changes could be reversed by Kir4.1 and Kir4.1 Tyr 9 Asp overexpression in Müller cells. Kir4.1 overexpression, but not Kir4.1 Tyr 9 Asp overexpression, reduced the number of proliferative and migratory microglia induced by activated Müller cells. Collectively, these results suggest that the tyrosine residue at position nine in Kir4.1 may serve as a functional modulation site in the retina in an experimental model of glaucoma. Kir4.1 and Kir4.1 Tyr 9 Asp overexpression attenuated Müller cell activation, reduced ATP/P2X receptor-mediated interactions between glial cells, inhibited microglial activation, and decreased the synthesis and release of pro-inflammatory factors, consequently ameliorating retinal ganglion cell apoptosis in glaucoma.

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来源期刊
Neural Regeneration Research
Neural Regeneration Research CELL BIOLOGY-NEUROSCIENCES
CiteScore
8.00
自引率
9.80%
发文量
515
审稿时长
1.0 months
期刊介绍: Neural Regeneration Research (NRR) is the Open Access journal specializing in neural regeneration and indexed by SCI-E and PubMed. The journal is committed to publishing articles on basic pathobiology of injury, repair and protection to the nervous system, while considering preclinical and clinical trials targeted at improving traumatically injuried patients and patients with neurodegenerative diseases.
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