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核层蛋白 B1 的缺失和核形态缺陷是体外星形胶质细胞衰老和衰老人类海马体的标志。

Loss of lamin-B1 and defective nuclear morphology are hallmarks of astrocyte senescence in vitro and in the aging human hippocampus.

机构信息

Institute of Biomedical Sciences, Federal University of Rio de Janeiro, Rio de Janeiro, Brazil.

Brazilian Aging Brain Study Group, University of São Paulo Medical School, São Paulo, Brazil.

出版信息

Aging Cell. 2022 Jan;21(1):e13521. doi: 10.1111/acel.13521. Epub 2021 Dec 10.

Abstract

The increase in senescent cells in tissues, including the brain, is a general feature of normal aging and age-related pathologies. Senescent cells exhibit a specific phenotype, which includes an altered nuclear morphology and transcriptomic changes. Astrocytes undergo senescence in vitro and in age-associated neurodegenerative diseases, but little is known about whether this process also occurs in physiological aging, as well as its functional implication. Here, we investigated astrocyte senescence in vitro, in old mouse brains, and in post-mortem human brain tissue of elderly. We identified a significant loss of lamin-B1, a major component of the nuclear lamina, as a hallmark of senescent astrocytes. We showed a severe reduction of lamin-B1 in the dentate gyrus of aged mice, including in hippocampal astrocytes, and in the granular cell layer of the hippocampus of post-mortem human tissue from non-demented elderly. The lamin-B1 reduction was associated with nuclear deformations, represented by an increased incidence of invaginated nuclei and loss of nuclear circularity in senescent astrocytes in vitro and in the aging human hippocampus. We also found differences in lamin-B1 levels and astrocyte nuclear morphology between the granular cell layer and polymorphic layer in the elderly human hippocampus, suggesting an intra-regional-dependent aging response of human astrocytes. Moreover, we described senescence-associated impaired neuritogenic and synaptogenic capacity of mouse astrocytes. Our findings show that reduction of lamin-B1 is a conserved feature of hippocampal cells aging, including astrocytes, and shed light on significant defects in nuclear lamina structure which may contribute to astrocyte dysfunctions during aging.

摘要

组织(包括大脑)中衰老细胞的增加是正常衰老和与年龄相关的病理的普遍特征。衰老细胞表现出特定的表型,包括核形态改变和转录组变化。星形胶质细胞在体外和与年龄相关的神经退行性疾病中发生衰老,但对于这一过程是否也发生在生理衰老中及其功能意义知之甚少。在这里,我们研究了体外、老年小鼠大脑中和老年人大脑死后组织中的星形胶质细胞衰老。我们确定了核层主要成分 lamin-B1 的显著丢失是衰老星形胶质细胞的标志。我们发现,在老年小鼠的齿状回(包括海马星形胶质细胞)和非痴呆老年人大脑组织的海马颗粒细胞层中, lamin-B1 严重减少。lamin-B1 的减少与核变形有关,表现为体外衰老星形胶质细胞和衰老人类海马体中内陷核的发生率增加和核圆形度丧失。我们还发现,在老年人大脑海马体的颗粒细胞层和多形细胞层之间, lamin-B1 水平和星形胶质细胞核形态存在差异,这表明人类星形胶质细胞存在区域内依赖的衰老反应。此外,我们描述了衰老相关的小鼠星形胶质细胞的神经发生和突触发生能力受损。我们的研究结果表明, lamin-B1 的减少是包括星形胶质细胞在内的海马细胞衰老的保守特征,并揭示了核层结构的显著缺陷,这可能导致衰老过程中星形胶质细胞功能障碍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c15e/8761005/13aa87adc209/ACEL-21-e13521-g001.jpg

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