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全基因组 RNA 聚合酶stalling 在衰老过程中塑造转录组。

Genome-wide RNA polymerase stalling shapes the transcriptome during aging.

机构信息

Department of Molecular Genetics, Erasmus MC Cancer Institute, Erasmus University Medical Center, Rotterdam, The Netherlands.

University of Cologne, Faculty of Medicine, Cluster of Excellence for Aging Research, Institute for Genome Stability in Ageing and Disease, Cologne, Germany.

出版信息

Nat Genet. 2023 Feb;55(2):268-279. doi: 10.1038/s41588-022-01279-6. Epub 2023 Jan 19.

Abstract

Gene expression profiling has identified numerous processes altered in aging, but how these changes arise is largely unknown. Here we combined nascent RNA sequencing and RNA polymerase II chromatin immunoprecipitation followed by sequencing to elucidate the underlying mechanisms triggering gene expression changes in wild-type aged mice. We found that in 2-year-old liver, 40% of elongating RNA polymerases are stalled, lowering productive transcription and skewing transcriptional output in a gene-length-dependent fashion. We demonstrate that this transcriptional stress is caused by endogenous DNA damage and explains the majority of gene expression changes in aging in most mainly postmitotic organs, specifically affecting aging hallmark pathways such as nutrient sensing, autophagy, proteostasis, energy metabolism, immune function and cellular stress resilience. Age-related transcriptional stress is evolutionary conserved from nematodes to humans. Thus, accumulation of stochastic endogenous DNA damage during aging deteriorates basal transcription, which establishes the age-related transcriptome and causes dysfunction of key aging hallmark pathways, disclosing how DNA damage functionally underlies major aspects of normal aging.

摘要

基因表达谱分析已经确定了许多在衰老过程中改变的过程,但这些变化是如何产生的在很大程度上仍是未知的。在这里,我们结合了新生 RNA 测序和 RNA 聚合酶 II 染色质免疫沉淀测序,以阐明引发野生型老年小鼠基因表达变化的潜在机制。我们发现,在 2 岁的肝脏中,40%的延伸 RNA 聚合酶停滞不前,降低了有生产力的转录,并以基因长度依赖的方式改变了转录输出。我们证明,这种转录应激是由内源性 DNA 损伤引起的,并解释了大多数主要是有丝分裂后器官中衰老的大部分基因表达变化,特别是影响营养感应、自噬、蛋白质稳态、能量代谢、免疫功能和细胞应激弹性等衰老特征途径。从线虫到人,与衰老相关的转录应激是进化保守的。因此,在衰老过程中随机内源性 DNA 损伤的积累会降低基础转录,从而建立与年龄相关的转录组,并导致关键衰老特征途径的功能障碍,揭示了 DNA 损伤如何在功能上成为正常衰老的主要方面的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f8f9/9925383/9916c0fce8f2/41588_2022_1279_Fig1_HTML.jpg

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