Age-related dysregulation of the retinal transcriptome in African turquoise killifish

IF 7.8 1区 医学 Q1 Biochemistry, Genetics and Molecular Biology
Aging Cell Pub Date : 2024-05-14 DOI:10.1111/acel.14192
Steven Bergmans, Nicole C. L. Noel, Luca Masin, Ellen G. Harding, Aleksandra M. Krzywańska, Julie D. De Schutter, Rajagopal Ayana, Chi-Kuo Hu, Lut Arckens, Philip A. Ruzycki, Ryan B. MacDonald, Brian S. Clark, Lieve Moons
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Abstract

Age-related vision loss caused by retinal neurodegenerative pathologies is becoming more prevalent in our ageing society. To understand the physiological and molecular impact of ageing on retinal homeostasis, we used the short-lived African turquoise killifish, a model known to naturally develop central nervous system (CNS) ageing hallmarks and vision loss. Bulk and single-cell RNA-sequencing (scRNAseq) of three age groups (6-, 12-, and 18-week-old) identified transcriptional ageing fingerprints in the killifish retina, unveiling pathways also identified in the aged brain, including oxidative stress, gliosis, and inflammageing. These findings were comparable to observations in the ageing mouse retina. Additionally, transcriptional changes in genes related to retinal diseases, such as glaucoma and age-related macular degeneration, were observed. The cellular heterogeneity in the killifish retina was characterized, confirming the presence of all typical vertebrate retinal cell types. Data integration from age-matched samples between the bulk and scRNAseq experiments revealed a loss of cellular specificity in gene expression upon ageing, suggesting potential disruption in transcriptional homeostasis. Differential expression analysis within the identified cell types highlighted the role of glial/immune cells as important stress regulators during ageing. Our work emphasizes the value of the fast-ageing killifish in elucidating molecular signatures in age-associated retinal disease and vision decline. This study contributes to the understanding of how age-related changes in molecular pathways may impact CNS health, providing insights that may inform future therapeutic strategies for age-related pathologies.

Abstract Image

Abstract Image

非洲松石鳉视网膜转录组与年龄相关的失调。
在老龄化社会中,由视网膜神经退行性病变引起的老年性视力丧失正变得越来越普遍。为了了解老化对视网膜稳态的生理和分子影响,我们使用了寿命较短的非洲绿松石鳉鱼,这是一种已知会自然出现中枢神经系统(CNS)老化特征和视力丧失的鱼类。对三个年龄组(6周龄、12周龄和18周龄)的大量和单细胞RNA测序(scRNAseq)发现了箭鱼视网膜的转录老化指纹,揭示了在老化大脑中也发现的通路,包括氧化应激、神经胶质增生和炎症老化。这些发现与小鼠视网膜老化的观察结果相当。此外,还观察到与视网膜疾病(如青光眼和老年性黄斑变性)有关的基因的转录变化。研究还描述了鳉鱼视网膜细胞异质性的特征,证实了所有典型脊椎动物视网膜细胞类型的存在。大量和 scRNAseq 实验之间年龄匹配样本的数据整合显示,基因表达在老化过程中失去了细胞特异性,这表明转录平衡可能受到破坏。已识别细胞类型内部的差异表达分析凸显了神经胶质/免疫细胞在老化过程中作为重要应激调节因子的作用。我们的工作强调了快速衰老的鳉鱼在阐明与年龄相关的视网膜疾病和视力衰退的分子特征方面的价值。这项研究有助于人们了解与年龄相关的分子通路变化如何影响中枢神经系统的健康,并为未来针对与年龄相关的病症的治疗策略提供启示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Aging Cell
Aging Cell 生物-老年医学
CiteScore
14.40
自引率
2.60%
发文量
212
审稿时长
8 weeks
期刊介绍: Aging Cell, an Open Access journal, delves into fundamental aspects of aging biology. It comprehensively explores geroscience, emphasizing research on the mechanisms underlying the aging process and the connections between aging and age-related diseases.
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