核受体Nor1/NR4A3的SUMOylation可协调神经细胞中微管细胞骨架的动态和稳定性。

IF 6.1 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Cell and Bioscience Pub Date : 2024-07-13 DOI:10.1186/s13578-024-01273-x
Jonathan Gagnon, Véronique Caron, André Tremblay
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引用次数: 0

摘要

背景:Nor1/NR4A3是核受体NR4A亚家族的成员,在调节与发育、细胞稳态和神经功能有关的基因表达方面发挥着重要作用。然而,Nor1 仍被认为是一种孤儿受体,因为其天然配体在介导转录激活方面仍不明确。然而,其他激活信号可能会调节Nor1的活性,尽管它们在神经系统的发育和维持中的确切作用仍然难以捉摸:我们使用转录报告实验、基因表达谱分析、蛋白质周转测量和细胞生长实验来评估Nor1和SUMO缺陷变体在神经元细胞中的功能相关性。通过免疫沉淀评估了SUMO1和SUMO2与Nor1的连接情况。通过乙酰化和聚合试验以及活细胞荧光显微镜测定了微管蛋白的稳定性:结果:在这里,我们证明了Nor1在一个典型的ψKxE SUMO酰化基团中的Lys-89处进行SUMO1共轭,从而形成了复杂的Nor1 SUMO酰化模式,其中还包括Lys-137。破坏 Lys-89,从而阻止 SUMO1 连接,会导致 Nor1 的转录能力和蛋白质稳定性降低,并导致参与细胞生长和代谢的基因(如 ENO3、EN1 和 CFLAR)以及参与微管细胞骨架动力学的基因(包括 MAP2 和 MAPT)下调,从而降低神经元细胞的存活率。有趣的是,Lys-89 SUMOylation 对诺考达唑(一种微管解聚药物)的反应增强,尽管 Nor1 基因表达增强,但这并不足以挽救细胞免受微管破坏。相反,Lys-89 deSUMOylation 减少了 KATNA1、SPAST 和 FIGN 等微管破坏基因的表达,提高了 α-tubulin细胞水平、乙酰化和微丝组织,促进了微管的稳定性并增强了对诺贺唑的抵抗力。这些效应与 Lys-137 SUMOylation 形成了鲜明对比,表明基于特定 Nor1 输入 SUMOylation 信号的不同调控机制:我们的研究为了解 Nor1 的转录信号能力提供了新的视角,并确定了一种分层机制,即选择性 Nor1 SUMOylation 可调控神经元细胞骨架网络动力学和抵抗微管紊乱,而微管紊乱与神经退行性疾病密切相关。
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SUMOylation of nuclear receptor Nor1/NR4A3 coordinates microtubule cytoskeletal dynamics and stability in neuronal cells.

Background: Nor1/NR4A3 is a member of the NR4A subfamily of nuclear receptors that play essential roles in regulating gene expression related to development, cell homeostasis and neurological functions. However, Nor1 is still considered an orphan receptor, as its natural ligand remains unclear for mediating transcriptional activation. Yet other activation signals may modulate Nor1 activity, although their precise role in the development and maintenance of the nervous system remains elusive.

Methods: We used transcriptional reporter assays, gene expression profiling, protein turnover measurement, and cell growth assays to assess the functional relevance of Nor1 and SUMO-defective variants in neuronal cells. SUMO1 and SUMO2 conjugation to Nor1 were assessed by immunoprecipitation. Tubulin stability was determined by acetylation and polymerization assays, and live-cell fluorescent microscopy.

Results: Here, we demonstrate that Nor1 undergoes SUMO1 conjugation at Lys-89 within a canonical ψKxE SUMOylation motif, contributing to the complex pattern of Nor1 SUMOylation, which also includes Lys-137. Disruption of Lys-89, thereby preventing SUMO1 conjugation, led to reduced Nor1 transcriptional competence and protein stability, as well as the downregulation of genes involved in cell growth and metabolism, such as ENO3, EN1, and CFLAR, and in microtubule cytoskeleton dynamics, including MAP2 and MAPT, which resulted in reduced survival of neuronal cells. Interestingly, Lys-89 SUMOylation was potentiated in response to nocodazole, a microtubule depolymerizing drug, although this was insufficient to rescue cells from microtubule disruption despite enhanced Nor1 gene expression. Instead, Lys-89 deSUMOylation reduced the expression of microtubule-severing genes like KATNA1, SPAST, and FIGN, and enhanced α-tubulin cellular levels, acetylation, and microfilament organization, promoting microtubule stability and resistance to nocodazole. These effects contrasted with Lys-137 SUMOylation, suggesting distinct regulatory mechanisms based on specific Nor1 input SUMOylation signals.

Conclusions: Our study provides novel insights into Nor1 transcriptional signaling competence and identifies a hierarchical mechanism whereby selective Nor1 SUMOylation may govern neuronal cytoskeleton network dynamics and resistance against microtubule disturbances, a condition strongly associated with neurodegenerative diseases.

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来源期刊
Cell and Bioscience
Cell and Bioscience BIOCHEMISTRY & MOLECULAR BIOLOGY-
CiteScore
10.70
自引率
0.00%
发文量
187
审稿时长
>12 weeks
期刊介绍: Cell and Bioscience, the official journal of the Society of Chinese Bioscientists in America, is an open access, peer-reviewed journal that encompasses all areas of life science research.
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