Nuclear Import Defects Drive Cell Cycle Dysregulation in Neurodegeneration.

IF 8 1区 医学 Q1 CELL BIOLOGY
Aging Cell Pub Date : 2025-05-16 DOI:10.1111/acel.70091
Jonathan Plessis-Belair, Taylor Russo, Markus Riessland, Roger B Sher
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Abstract

Neurodegenerative diseases (NDDs) and other age-related disorders have been classically defined by a set of key pathological hallmarks. Two of these hallmarks, cell cycle dysregulation (CCD) and nucleocytoplasmic transport (NCT) defects, have long been debated as being either causal or consequential in the pathology of accelerated aging. Specifically, aberrant cell cycle activation in post-mitotic neurons has been shown to trigger neuronal cell death pathways and cellular senescence. Additionally, NCT has been observed to be progressively dysregulated during aging and in neurodegeneration, where the increased subcellular redistribution of nuclear proteins, such as TAR DNA-Binding Protein-43 (TDP-43), to the cytoplasm is a primary driver of disease. However, the functional significance of NCT defects as either a causal mechanism or consequence of pathology, and how the redistribution of cell cycle machinery contributes to neurodegeneration, remains unclear. Here, we describe that pharmacological inhibition of importin-β nuclear import is capable of perturbing cell cycle machinery both in mitotic neuronal cell lines and post-mitotic primary neurons in vitro. Our NemfR86S mouse model of motor neuron disease, characterized by nuclear import defects, further recapitulates the hallmarks of CCD we observed in mitotic cell lines and in post-mitotic primary neurons in vitro, and in spinal motor neurons in vivo. The observed CCD is consistent with the transcriptional and phenotypical dysregulation commonly associated with neuronal cell death and senescence-like features in NDDs. Together, this evidence suggests that impairment of nuclear import pathways resulting in CCD may be a common driver of pathology in neurodegeneration.

神经退行性疾病中核输入缺陷驱动细胞周期失调。
神经退行性疾病(ndd)和其他与年龄相关的疾病通常由一系列关键的病理标志来定义。其中两个标志,细胞周期失调(CCD)和核细胞质转运(NCT)缺陷,长期以来一直被认为是加速衰老病理的因果或后果。具体而言,有丝分裂后神经元异常的细胞周期激活已被证明可触发神经元细胞死亡途径和细胞衰老。此外,已观察到NCT在衰老和神经退行性变过程中逐渐失调,其中核蛋白(如TAR dna结合蛋白43 (TDP-43))向细胞质的亚细胞再分布增加是疾病的主要驱动因素。然而,NCT缺陷的功能意义是病理学的因果机制还是结果,以及细胞周期机制的重新分配如何导致神经退行性变仍不清楚。在这里,我们描述了在体外有丝分裂神经元细胞系和有丝分裂后原代神经元中,药物抑制输入蛋白-β核输入能够扰乱细胞周期机制。我们的NemfR86S小鼠运动神经元疾病模型以核输入缺陷为特征,进一步概括了我们在体外有丝分裂细胞系、有丝分裂后初级神经元和体内脊髓运动神经元中观察到的CCD的特征。观察到的CCD与ndd中通常与神经元细胞死亡和衰老样特征相关的转录和表型失调一致。总之,这些证据表明导致CCD的核输入通路损伤可能是神经变性病理的共同驱动因素。
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来源期刊
Aging Cell
Aging Cell Biochemistry, Genetics and Molecular Biology-Cell Biology
自引率
2.60%
发文量
212
期刊介绍: Aging Cell is an Open Access journal that focuses on the core aspects of the biology of aging, encompassing the entire spectrum of geroscience. The journal's content is dedicated to publishing research that uncovers the mechanisms behind the aging process and explores the connections between aging and various age-related diseases. This journal aims to provide a comprehensive understanding of the biological underpinnings of aging and its implications for human health. The journal is widely recognized and its content is abstracted and indexed by numerous databases and services, which facilitates its accessibility and impact in the scientific community. These include: Academic Search (EBSCO Publishing) Academic Search Alumni Edition (EBSCO Publishing) Academic Search Premier (EBSCO Publishing) Biological Science Database (ProQuest) CAS: Chemical Abstracts Service (ACS) Embase (Elsevier) InfoTrac (GALE Cengage) Ingenta Select ISI Alerting Services Journal Citation Reports/Science Edition (Clarivate Analytics) MEDLINE/PubMed (NLM) Natural Science Collection (ProQuest) PubMed Dietary Supplement Subset (NLM) Science Citation Index Expanded (Clarivate Analytics) SciTech Premium Collection (ProQuest) Web of Science (Clarivate Analytics) Being indexed in these databases ensures that the research published in Aging Cell is discoverable by researchers, clinicians, and other professionals interested in the field of aging and its associated health issues. This broad coverage helps to disseminate the journal's findings and contributes to the advancement of knowledge in geroscience.
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