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量化转录稳态随年龄的衰退

Quantification of Age-Related Decline in Transcriptional Homeostasis.

机构信息

Department of Computer Science and Engineering, Indraprastha Institute of Information Technology-Delhi (IIIT-Delhi), Okhla, Phase III, New Delhi 110020, India.

Department of Computer Science and Engineering, Indraprastha Institute of Information Technology-Delhi (IIIT-Delhi), Okhla, Phase III, New Delhi 110020, India; Department of Computational Biology, Indraprastha Institute of Information Technology-Delhi (IIIT-Delhi), Okhla, Phase III, New Delhi 110020, India.

出版信息

J Mol Biol. 2021 Sep 17;433(19):167179. doi: 10.1016/j.jmb.2021.167179. Epub 2021 Jul 30.

Abstract

Age-dependent dysregulation of transcription regulatory machinery triggers modulations in the gene expression levels leading to the decline in cellular fitness. Tracking of these transcripts along the temporal axis in multiple species revealed a spectrum of evolutionarily conserved pathways, such as electron transport chain, translation regulation, DNA repair, etc. Recent shreds of evidence suggest that aging deteriorates the transcription machinery itself, indicating the hidden complexity of the aging transcriptomes. This reinforces the need for devising novel computational methods to view aging through the lens of transcriptomics. Here, we present Homeostatic Divergence Score (HDS) to quantify the extent of messenger RNA (mRNA) homeostasis by assessing the balance between spliced and unspliced mRNA repertoire in single cells. We validated its utility in two independent aging datasets, and identified sets of genes undergoing age-related breakdown of transcriptional homeostasis. Moreover, testing of our method on a subpopulation of human embryonic stem cells revealed a set of differentially processed transcripts segregating these subpopulations. Our preliminary analyses in this direction suggest that mRNA processing level information offered by single-cell RNA sequencing (scRNA-seq) data is a superior determinant of chronological age as compared to transcriptional noise.

摘要

年龄相关的转录调控机制失调会触发基因表达水平的调节,导致细胞功能下降。在多个物种中沿着时间轴追踪这些转录本揭示了一系列进化保守的途径,如电子传递链、翻译调控、DNA 修复等。最近的一些证据表明,衰老会恶化转录机制本身,这表明衰老转录组的隐藏复杂性。这就需要设计新的计算方法,通过转录组学的角度来看待衰老。在这里,我们提出了稳态离差评分(HDS),通过评估单个细胞中剪接和未剪接 mRNA 库之间的平衡来量化 mRNA 稳态的程度。我们在两个独立的衰老数据集上验证了它的实用性,并确定了一组与转录稳态相关的基因。此外,我们在人类胚胎干细胞的一个亚群上测试了我们的方法,发现了一组差异处理的转录本,这些转录本将这些亚群分开。我们在这方面的初步分析表明,与转录噪声相比,单细胞 RNA 测序 (scRNA-seq) 数据提供的 mRNA 处理水平信息是生物钟年龄的更好决定因素。

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