衰老人真皮成纤维细胞机械返老还童过程中细胞骨架、染色质和基因表达的重塑。

IF 3.1 3区 生物学 Q3 CELL BIOLOGY
Molecular Biology of the Cell Pub Date : 2025-01-01 Epub Date: 2024-12-04 DOI:10.1091/mbc.E24-09-0430
Trinadha Rao Sornapudi, Luezhen Yuan, Jana M Braunger, Caroline Uhler, G V Shivashankar
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引用次数: 0

摘要

衰老与细胞功能的逐渐衰退有关。为了重置老化的细胞表型,已经探索了各种重编程方法,包括机械途径。然而,细胞再生的表观遗传机制尚不清楚。在这里,我们使用免疫荧光、RNA-seq和Hi-C实验研究了年轻、衰老和机械再生成纤维细胞的细胞骨架、全基因组染色质和转录变化。机械恢复衰老的成纤维细胞,部分将其转录重置为更年轻的细胞状态,显示出染色体间接触和层相关结构域的局部重组。有趣的是,观察到的染色质重组与转录变化相关。在恢复活力状态下的免疫荧光实验证实了肌动蛋白收缩能力的增加,就像年轻的成纤维细胞一样。此外,恢复的收缩特性在多个细胞传代中保持不变。总的来说,我们的研究结果概述了细胞骨架、染色质和基因活性的变化是如何与衰老和年轻化联系在一起的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Remodeling of cytoskeleton, chromatin, and gene expression during mechanical rejuvenation of aged human dermal fibroblasts.

Aging is associated with a progressive decline in cellular function. To reset the aged cellular phenotype, various reprogramming approaches, including mechanical routes, have been explored. However, the epigenetic mechanisms underlying cellular rejuvenation are poorly understood. Here, we studied the cytoskeletal, genome-wide chromatin and transcriptional changes in young, aged, and mechanically rejuvenated fibroblasts using immunofluorescence, RNA sequencing, and Hi-C experiments. The mechanically rejuvenated aged fibroblasts, that had partially reset their transcription to a younger cell state, showed a local reorganization of the interchromosomal contacts and lamina-associated domains. Interestingly, the observed chromatin reorganization correlated with the transcriptional changes. Immunofluorescence experiments in the rejuvenated state confirmed increased actomyosin contractility like younger fibroblasts. In addition, the rejuvenated contractile properties were maintained over multiple cell passages. Overall, our results give an overview of how changes in the cytoskeleton, chromatin, and gene activity are connected to aging and rejuvenation.

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来源期刊
Molecular Biology of the Cell
Molecular Biology of the Cell 生物-细胞生物学
CiteScore
6.00
自引率
6.10%
发文量
402
审稿时长
2 months
期刊介绍: MBoC publishes research articles that present conceptual advances of broad interest and significance within all areas of cell, molecular, and developmental biology. We welcome manuscripts that describe advances with applications across topics including but not limited to: cell growth and division; nuclear and cytoskeletal processes; membrane trafficking and autophagy; organelle biology; quantitative cell biology; physical cell biology and mechanobiology; cell signaling; stem cell biology and development; cancer biology; cellular immunology and microbial pathogenesis; cellular neurobiology; prokaryotic cell biology; and cell biology of disease.
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