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下调 glob1 可通过限制异染色质丢失和提高果蝇中的自噬反应来减轻人 tau 介导的神经毒性。

Downregulation of glob1 mitigates human tau mediated neurotoxicity by restricting heterochromatin loss and elevating the autophagic response in drosophila.

机构信息

Department of Genetics, University of Delhi South Campus, Benito Juarez Road, New Delhi, 110021, India.

出版信息

Mol Biol Rep. 2022 Jul;49(7):6581-6590. doi: 10.1007/s11033-022-07498-8. Epub 2022 May 28.

Abstract

BACKGROUND

Human neuronal tauopathies are typically characterized by the accumulation of hyperphosphorylated tau in the forms of paired helical filaments and/or neurofibrillary tangles in the brain neurons. Tau-mediated heterochromatin loss and subsequent global transcriptional upsurge have been demonstrated as one of the key factors that promotes tau toxicity. We have reported earlier that expression of human tau-transgene in Drosophila induces the expression of glob1, and its restored level restricts tau etiology by regulating tau hyperphosphorylation and ROS generation via GSK-3β/p-Akt and Nrf2-keap1-ARE pathways, respectively. In view of this noted capability of glob1 in regulation of oxidative stress, and involvement of ROS in chromatin remodeling; we investigate if downregulation of glob1 restores tau-mediated heterochromatin loss in order to alleviate neurotoxicity.

METHODS AND RESULTS

The tau transgene was expressed in Drosophila eye by utilizing GAL4/UAS system. Expression of glob1 was depleted in tau expressing tissues by co-expressing an UAS-glob1RNAi transgene by GMR-Gal4 driver. Immunostaining and wstern blot analysis suggested that tissue-specific downregulation of glob1 restores the cellular level of CBP and minimizes tau-mediated heterochromatin loss. It also assists in mounting an improved protective autophagic response to alleviate the human tau-induced neurotoxicity in Drosophila tauopathy models.

CONCLUSIONS

Our study unfolds a novel aspect of the multitasking globin protein in restricting the pathogenesis of neuronal tauopathies. Interestingly, due to notable similarities between Drosophila glob1 and human globin gene(s), our findings may be helpful in developing novel therapeutic approaches against tauopathies.

摘要

背景

人类神经元 tau 病通常以脑神经元中过度磷酸化的 tau 形成双螺旋丝和/或神经原纤维缠结的形式积累为特征。tau 介导的异染色质丢失和随后的全局转录上调已被证明是促进 tau 毒性的关键因素之一。我们之前曾报道过,人 tau 转基因在果蝇中的表达诱导了 glob1 的表达,其恢复水平通过分别通过 GSK-3β/p-Akt 和 Nrf2-keap1-ARE 途径调节 tau 过度磷酸化和 ROS 产生,从而限制 tau 病因。鉴于 glob1 在调节氧化应激方面的这种显著能力,以及 ROS 参与染色质重塑;我们研究了 glob1 的下调是否恢复 tau 介导的异染色质丢失,以减轻神经毒性。

方法和结果

利用 GAL4/UAS 系统在果蝇眼中表达 tau 转基因。通过共表达 UAS-glob1RNAi 转基因,利用 GMR-Gal4 驱动子在表达 tau 的组织中耗尽 glob1 的表达。免疫染色和 Western blot 分析表明,组织特异性下调 glob1 可恢复细胞水平的 CBP,并最大限度地减少 tau 介导的异染色质丢失。它还有助于建立更好的保护性自噬反应,以减轻果蝇 tau 病模型中人 tau 诱导的神经毒性。

结论

我们的研究揭示了多功能珠蛋白蛋白在限制神经元 tau 病发病机制方面的一个新方面。有趣的是,由于果蝇 glob1 和人珠蛋白基因之间存在显著相似性,我们的发现可能有助于开发针对 tau 病的新治疗方法。

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