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条形码测序和用于测定时序寿命的高通量分析揭示了裂殖酵母中与衰老相关的基因。

Barcode sequencing and a high-throughput assay for chronological lifespan uncover ageing-associated genes in fission yeast.

作者信息

Romila Catalina A, Townsend StJohn, Malecki Michal, Kamrad Stephan, Rodríguez-López María, Hillson Olivia, Cotobal Cristina, Ralser Markus, Bähler Jürg

机构信息

Institute of Healthy Ageing and Department of Genetics, Evolution & Environment, University College London, London WC1E 6BT, UK.

These authors contributed equally.

出版信息

Microb Cell. 2021 May 10;8(7):146-160. doi: 10.15698/mic2021.07.754. eCollection 2021 Jul 5.

Abstract

Ageing-related processes are largely conserved, with simple organisms remaining the main platform to discover and dissect new ageing-associated genes. Yeasts provide potent model systems to study cellular ageing owing their amenability to systematic functional assays under controlled conditions. Even with yeast cells, however, ageing assays can be laborious and resource-intensive. Here we present improved experimental and computational methods to study chronological lifespan in . We decoded the barcodes for 3206 mutants of the latest gene-deletion library, enabling the parallel profiling of ~700 additional mutants compared to previous screens. We then applied a refined method of barcode sequencing (Bar-seq), addressing technical and statistical issues raised by persisting DNA in dead cells and sampling bottlenecks in aged cultures, to screen for mutants showing altered lifespan during stationary phase. This screen identified 341 long-lived mutants and 1246 short-lived mutants which point to many previously unknown ageing-associated genes, including 46 conserved but entirely uncharacterized genes. The ageing-associated genes showed coherent enrichments in processes also associated with human ageing, particularly with respect to ageing in non-proliferative brain cells. We also developed an automated colony-forming unit assay to facilitate medium- to high-throughput chronological-lifespan studies by saving time and resources compared to the traditional assay. Results from the Bar-seq screen showed good agreement with this new assay. This study provides an effective methodological platform and identifies many new ageing-associated genes as a framework for analysing cellular ageing in yeast and beyond.

摘要

与衰老相关的过程在很大程度上是保守的,简单生物体仍然是发现和剖析新的衰老相关基因的主要平台。酵母因其能够在可控条件下进行系统功能测定,为研究细胞衰老提供了强大的模型系统。然而,即使是酵母细胞,衰老测定也可能既费力又耗费资源。在此,我们提出了改进的实验和计算方法来研究[具体对象]的时序寿命。我们解码了最新基因缺失文库中3206个突变体的条形码,与之前的筛选相比,能够对约700个额外的突变体进行平行分析。然后,我们应用了一种改进的条形码测序方法(Bar-seq),解决了死细胞中持续存在的DNA以及老化培养物中的采样瓶颈所引发的技术和统计问题,以筛选出在稳定期显示寿命改变的突变体。该筛选鉴定出341个长寿突变体和1246个短寿突变体,这些突变体指向许多先前未知的衰老相关基因,包括46个保守但完全未被表征的基因。这些衰老相关基因在与人类衰老也相关的过程中呈现出连贯的富集,特别是在非增殖性脑细胞的衰老方面。我们还开发了一种自动菌落形成单位测定法,与传统测定法相比,通过节省时间和资源来促进中到高通量的时序寿命研究。Bar-seq筛选的结果与这种新测定法显示出良好的一致性。本研究提供了一个有效的方法平台,并鉴定出许多新的衰老相关基因,作为分析酵母及其他生物细胞衰老的框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa10/8246024/45b7eef20f3b/mic-08-146-g001.jpg

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