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BESST:一种新型 LncRNA 敲除策略,基因组扰动较小。

BESST: a novel LncRNA knockout strategy with less genome perturbance.

机构信息

School of Life Sciences, Tsinghua University, Beijing100084, China.

China State Key Laboratory of Chemical Oncogenomics, Tsinghua Shenzhen International Graduate School, Shenzhen518055, China.

出版信息

Nucleic Acids Res. 2023 May 22;51(9):e49. doi: 10.1093/nar/gkad197.

Abstract

Long noncoding RNAs (lncRNAs) are >200 nt RNA transcripts without protein-coding potential. LncRNAs can be categorized into intergenic, intronic, bidirectional, sense, and antisense lncRNAs based on the genomic localization to nearby protein-coding genes. The current CRISPR-based lncRNA knockout strategy works efficiently for lncRNAs distant from the protein-coding gene, whereas it causes genomic perturbance inevitably due to technical limitations. In this study, we introduce a novel lncRNA knockout strategy, BESST, by deleting the genomic DNA fragment from the branch point to the 3' splicing site in the last intron of the target lncRNA. The BESST knockout exhibited comparable or superior repressive efficiency to RNA silencing or conventional promoter-exon1 deletion. Significantly, the BESST knockout strategy minimized the intervention of adjacent/overlap protein-coding genes by removing an average of ∼130 bp from genomic DNA. Our data also found that the BESST knockout strategy causes lncRNA nuclear retention, resulting in decapping and deadenylation of the lncRNA poly(A) tail. Further study revealed that PABPN1 is essential for the BESST-mediated decay and subsequent poly(A) deadenylation and decapping. Together, the BESST knockout strategy provides a versatile tool for investigating gene function by generating knockout cells or animals with high specificity and efficiency.

摘要

长链非编码 RNA(lncRNA)是长度大于 200 个核苷酸且没有蛋白编码潜能的 RNA 转录物。lncRNA 可以根据基因组在附近蛋白编码基因上的定位分为基因间、内含子、双向、正义和反义 lncRNA。目前基于 CRISPR 的 lncRNA 敲除策略对于远离蛋白编码基因的 lncRNA 非常有效,但由于技术限制,不可避免地会引起基因组扰动。在本研究中,我们引入了一种新的 lncRNA 敲除策略 BESST,通过从靶 lncRNA 的最后一个内含子的分支点到 3'剪接位点删除基因组 DNA 片段。BESST 敲除表现出与 RNA 沉默或传统启动子-外显子 1 缺失相当或更高的抑制效率。重要的是,BESST 敲除策略通过从基因组 DNA 中去除平均约 130 bp,最大限度地减少了对相邻/重叠蛋白编码基因的干预。我们的数据还发现,BESST 敲除策略导致 lncRNA 核保留,导致 lncRNA 聚(A)尾的脱帽和去腺苷酸化。进一步的研究表明,PABPN1 是 BESST 介导的降解以及随后的 poly(A) 去腺苷酸化和脱帽所必需的。总之,BESST 敲除策略提供了一种通用的工具,通过产生具有高特异性和效率的敲除细胞或动物来研究基因功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d36c/10201427/46023a71f819/gkad197fig1.jpg

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