Epigenetic regulation of TDP-43: potential implications for amyotrophic lateral sclerosis.

Frontiers in molecular medicine Pub Date : 2025-02-13 eCollection Date: 2025-01-01 DOI:10.3389/fmmed.2025.1530719
D Y Mengistu, M Terribili, C Pellacani, L Ciapponi, M Marzullo
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Abstract

Amyotrophic lateral sclerosis (ALS) is a multifactorial neurodegenerative disease characterized by the progressive degeneration of motor neurons. One of the key pathogenic factors implicated in ALS is TDP-43 (TAR DNA-binding protein 43), an RNA-binding protein encoded by the TARDBP gene. Under normal physiological conditions, TDP-43 predominantly resides in the nucleus, where it plays a critical role in regulating gene expression, alternative splicing, RNA transport, and stability. In ALS, TDP-43 undergoes pathological mislocalization from the nucleus to the cytoplasm, disrupting its normal function and contributing to disease progression. The nuclear loss of TDP-43 leads to widespread dysregulation of RNA metabolism. Moreover, mislocalized TDP-43 aggregates in the cytoplasm, acquires toxic properties that sequester essential RNA molecules and proteins. Importantly, deviations in TDP-43 levels, whether excessive or reduced, can lead to cellular dysfunction, and contribute to disease progression, highlighting the delicate balance required for neuronal health. Emerging evidence suggests that epigenetic mechanisms may play a crucial role in regulating TARDBP expression and, consequently, TDP-43 cellular levels. Epigenetic modifications such as DNA methylation, histone modifications, and non-coding RNAs are increasingly recognized as modulators of gene expression and cellular function in neurodegenerative diseases, including ALS. Dysregulation of these processes could contribute to aberrant TARDBP expression, amplifying TDP-43-associated pathologies. This review explores and summarizes the recent findings on how specific epigenetic modifications influence TDP-43 expression and discusses their possible implications for disease progression.

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肌萎缩性脊髓侧索硬化症(ALS)是一种多因素神经退行性疾病,以运动神经元的进行性变性为特征。TDP-43(TAR DNA 结合蛋白 43)是牵涉到 ALS 的关键致病因素之一,它是一种由 TARDBP 基因编码的 RNA 结合蛋白。在正常生理条件下,TDP-43 主要存在于细胞核中,在调节基因表达、替代剪接、RNA 运输和稳定性方面发挥着关键作用。在渐冻人症中,TDP-43 发生病理性错定位,从细胞核转移到细胞质,从而破坏其正常功能,导致疾病进展。TDP-43 在细胞核中的缺失会导致 RNA 代谢的广泛失调。此外,错误定位的 TDP-43 在细胞质中聚集,具有毒性,会封闭重要的 RNA 分子和蛋白质。重要的是,TDP-43 水平的偏差,无论是过高还是过低,都会导致细胞功能障碍,并导致疾病进展,这凸显了神经元健康所需的微妙平衡。新的证据表明,表观遗传机制可能在调节 TARDBP 的表达以及 TDP-43 的细胞水平方面起着至关重要的作用。人们越来越认识到,DNA 甲基化、组蛋白修饰和非编码 RNA 等表观遗传修饰是神经退行性疾病(包括 ALS)中基因表达和细胞功能的调节剂。这些过程的失调可能会导致 TARDBP 的异常表达,扩大 TDP-43 相关病症的范围。本综述探讨并总结了有关特定表观遗传修饰如何影响 TDP-43 表达的最新发现,并讨论了它们对疾病进展可能产生的影响。
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