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CRISPR 间隔区通过 RNA 获得的转录记录。

Transcriptional recording by CRISPR spacer acquisition from RNA.

机构信息

Department of Biosystems Science and Engineering, ETH Zurich, Basel, Switzerland.

Department of Chemistry, University of Basel, Basel, Switzerland.

出版信息

Nature. 2018 Oct;562(7727):380-385. doi: 10.1038/s41586-018-0569-1. Epub 2018 Oct 3.

Abstract

The ability to record transcriptional events within a cell over time would help to elucidate how molecular events give rise to complex cellular behaviours and states. However, current molecular recording technologies capture only a small set of defined stimuli. Here we use CRISPR spacer acquisition to capture and convert intracellular RNAs into DNA, enabling DNA-based storage of transcriptional information. In Escherichia coli, we show that defined stimuli, such as an RNA virus or arbitrary sequences, as well as complex stimuli, such as oxidative stress, result in quantifiable transcriptional records that are stored within a population of cells. We demonstrate that the transcriptional records enable us to classify and describe complex cellular behaviours and to identify the precise genes that orchestrate differential cellular responses. In the future, CRISPR spacer acquisition-mediated recording of RNA followed by deep sequencing (Record-seq) could be used to reconstruct transcriptional histories that describe complex cell behaviours or pathological states.

摘要

能够随时间记录细胞内的转录事件将有助于阐明分子事件如何产生复杂的细胞行为和状态。然而,目前的分子记录技术只能捕捉到一小部分定义明确的刺激。在这里,我们使用 CRISPR 间隔物获取技术来捕获和转化细胞内的 RNA 为 DNA,从而实现基于 DNA 的转录信息存储。在大肠杆菌中,我们表明,定义明确的刺激,如 RNA 病毒或任意序列,以及复杂的刺激,如氧化应激,会导致可量化的转录记录,这些记录存储在细胞群体中。我们证明,转录记录使我们能够对复杂的细胞行为进行分类和描述,并确定协调细胞差异反应的精确基因。在未来,CRISPR 间隔物获取介导的 RNA 记录随后进行深度测序(Record-seq)可用于重建描述复杂细胞行为或病理状态的转录历史。

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