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染色体不稳定性、衰老与脑部疾病。

Chromosome Instability, Aging and Brain Diseases.

机构信息

Yurov's Laboratory of Molecular Genetics and Cytogenomics of the Brain, Mental Health Research Center, 117152 Moscow, Russia.

Laboratory of Molecular Cytogenetics of Neuropsychiatric Diseases, Veltischev Research and Clinical Institute for Pediatrics of the Pirogov Russian National Research Medical University, 125412 Moscow, Russia.

出版信息

Cells. 2021 May 19;10(5):1256. doi: 10.3390/cells10051256.

Abstract

Chromosome instability (CIN) has been repeatedly associated with aging and progeroid phenotypes. Moreover, brain-specific CIN seems to be an important element of pathogenic cascades leading to neurodegeneration in late adulthood. Alternatively, CIN and aneuploidy (chromosomal loss/gain) syndromes exhibit accelerated aging phenotypes. Molecularly, cellular senescence, which seems to be mediated by CIN and aneuploidy, is likely to contribute to brain aging in health and disease. However, there is no consensus about the occurrence of CIN in the aging brain. As a result, the role of CIN/somatic aneuploidy in normal and pathological brain aging is a matter of debate. Still, taking into account the effects of CIN on cellular homeostasis, the possibility of involvement in brain aging is highly likely. More importantly, the CIN contribution to neuronal cell death may be responsible for neurodegeneration and the aging-related deterioration of the brain. The loss of CIN-affected neurons probably underlies the contradiction between reports addressing ontogenetic changes of karyotypes within the aged brain. In future studies, the combination of single-cell visualization and whole-genome techniques with systems biology methods would certainly define the intrinsic role of CIN in the aging of the normal and diseased brain.

摘要

染色体不稳定性 (CIN) 与衰老和早衰表型反复相关。此外,大脑特异性 CIN 似乎是导致成年后期神经退行性变的致病级联反应的重要因素。或者,CIN 和非整倍体(染色体丢失/获得)综合征表现出加速的衰老表型。从分子水平上看,细胞衰老似乎是由 CIN 和非整倍体介导的,这可能有助于健康和疾病状态下的大脑衰老。然而,关于衰老大脑中是否存在 CIN 尚未达成共识。因此,CIN/体细胞非整倍体在正常和病理性大脑衰老中的作用仍存在争议。尽管如此,考虑到 CIN 对细胞内稳态的影响,CIN 参与大脑衰老的可能性非常高。更重要的是,CIN 对神经元细胞死亡的贡献可能是导致神经退行性变和与年龄相关的大脑恶化的原因。受 CIN 影响的神经元的丧失可能是解释衰老大脑内染色体组型发育变化的报告之间存在矛盾的原因。在未来的研究中,单细胞可视化和全基因组技术与系统生物学方法的结合肯定会确定 CIN 在正常和患病大脑衰老中的内在作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9767/8161106/c9f311f29582/cells-10-01256-g001.jpg

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