新しいタイプのCRISPRを用いたノンコーディングRNAの機能発見(Finding Function for Noncoding RNAs Using a New Kind of CRISPR)

ad

2024-11-07 ニューヨーク大学 (NYU)

ニューヨーク大学の研究者は、CRISPR技術を用いて非コードRNAの機能を解明する新たな手法を開発しました。この手法では、RNAを標的とするCRISPR酵素Cas13を活用し、非コードRNAの役割やRNAの調節機構を詳細に解析できます。これにより、非コードRNAが関与する疾患の理解や新たな治療法の開発が期待されます。

<関連情報>

トランスクリプトーム規模のRNA標的CRISPRスクリーニングにより、ヒト細胞における必須lncRNAが明らかになる Transcriptome-scale RNA-targeting CRISPR screens reveal essential lncRNAs in human cells

Wen-Wei Liang∙ Simon Müller∙ Sydney K. Hart∙ … ∙ Olena Kolumba∙ Breanna Williams∙ Neville E. Sanjana
Cell  Published:November 11, 2024
DOI:https://doi.org/10.1016/j.cell.2024.10.021

Graphical abstract

新しいタイプのCRISPRを用いたノンコーディングRNAの機能発見(Finding Function for Noncoding RNAs Using a New Kind of CRISPR)

Highlights

•Transcriptome-wide CRISPR-Cas13 screens to identify essential human lncRNAs
•Discovery of 46 universally essential and >700 context-specific essential lncRNAs
•Most essential lncRNAs operate independently of their nearest protein-coding genes
•Dynamic expression of essential lncRNAs during development and in specific tumors

Summary

Mammalian genomes host a diverse array of RNA that includes protein-coding and noncoding transcripts. However, the functional roles of most long noncoding RNAs (lncRNAs) remain elusive. Using RNA-targeting CRISPR-Cas13 screens, we probed how the loss of ∼6,200 lncRNAs impacts cell fitness across five human cell lines and identified 778 lncRNAs with context-specific or broad essentiality. We confirm their essentiality with individual perturbations and find that the majority of essential lncRNAs operate independently of their nearest protein-coding genes. Using transcriptome profiling in single cells, we discover that the loss of essential lncRNAs impairs cell-cycle progression and drives apoptosis. Many essential lncRNAs demonstrate dynamic expression across tissues during development. Using ∼9,000 primary tumors, we pinpoint those lncRNAs whose expression in tumors correlates with survival, yielding new biomarkers and potential therapeutic targets. This transcriptome-wide survey of functional lncRNAs advances our understanding of noncoding transcripts and demonstrates the potential of transcriptome-scale noncoding screens with Cas13.

細胞遺伝子工学
ad
ad
Follow
ad
タイトルとURLをコピーしました