Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Live cell imaging and proteomic profiling of endogenous NEAT1 lncRNA by CRISPR/Cas9-mediated knock-in

View through CrossRef
AbstractIn mammalian cells, long noncoding RNAs (lncRNAs) form complexes with proteins to execute various biological functions such as gene transcription, RNA processing and other signaling activities. However, methods to track endogenous lncRNA dynamics in live cells and screen for lncRNA interacting proteins are limited. Here, we report the development of CERTIS (CRISPR-mediated Endogenous lncRNA Tracking and Immunoprecipitation System) to visualize and isolate endogenous lncRNA, by precisely inserting a 24-repeat MS2 tag into the distal end of lncRNA locus through the CRISPR/Cas9 technology. In this study, we show that CERTIS effectively labeled the paraspeckle lncRNA NEAT1 without disturbing its physiological properties and could monitor the endogenous expression variation of NEAT1. In addition, CERTIS displayed superior performance on both short- and long-term tracking of NEAT1 dynamics in live cells. We found that NEAT1 and paraspeckles were sensitive to topoisomerase I specific inhibitors. Moreover, RNA Immunoprecipitation (RIP) of the MS2-tagged NEAT1 lncRNA successfully revealed several new protein components of paraspeckle. Our results support CERTIS as a tool suitable to track both spatial and temporal lncRNA regulation in live cells as well as study the lncRNA-protein interactomes.
Title: Live cell imaging and proteomic profiling of endogenous NEAT1 lncRNA by CRISPR/Cas9-mediated knock-in
Description:
AbstractIn mammalian cells, long noncoding RNAs (lncRNAs) form complexes with proteins to execute various biological functions such as gene transcription, RNA processing and other signaling activities.
However, methods to track endogenous lncRNA dynamics in live cells and screen for lncRNA interacting proteins are limited.
Here, we report the development of CERTIS (CRISPR-mediated Endogenous lncRNA Tracking and Immunoprecipitation System) to visualize and isolate endogenous lncRNA, by precisely inserting a 24-repeat MS2 tag into the distal end of lncRNA locus through the CRISPR/Cas9 technology.
In this study, we show that CERTIS effectively labeled the paraspeckle lncRNA NEAT1 without disturbing its physiological properties and could monitor the endogenous expression variation of NEAT1.
In addition, CERTIS displayed superior performance on both short- and long-term tracking of NEAT1 dynamics in live cells.
We found that NEAT1 and paraspeckles were sensitive to topoisomerase I specific inhibitors.
Moreover, RNA Immunoprecipitation (RIP) of the MS2-tagged NEAT1 lncRNA successfully revealed several new protein components of paraspeckle.
Our results support CERTIS as a tool suitable to track both spatial and temporal lncRNA regulation in live cells as well as study the lncRNA-protein interactomes.

Related Results

Introduction to CRISPR/Cas9
Introduction to CRISPR/Cas9
Clustered Regularly Interspersed Short Palindromic Repeats (often referred to as CRISPR) is a revolutionary new genome engineering technology that is capable of modifying virtually...
Genome engineering using CRISPR
Genome engineering using CRISPR
Clustered Regularly Interspersed Short Palindromic Repeats (often referred to as CRISPR) is a revolutionary new genome engineering technology that is capable of modifying virtually...
Diverse evolutionary roots and mechanistic variations of the CRISPR-Cas systems
Diverse evolutionary roots and mechanistic variations of the CRISPR-Cas systems
BACKGROUND Prokaryotes have evolved multiple systems to combat invaders such as viruses and plasmids. Examples of such defense systems include receptor masking,...
LncRNA NEAT1 Facilitates Glioma Progression Via Stabilizing PGK1
LncRNA NEAT1 Facilitates Glioma Progression Via Stabilizing PGK1
Abstract Background: Long noncoding RNA NEAT1 has been implicated in glioma progression. However, the effect of NEAT1 on glycolysis of glioma cell and the potential mechani...
LncRNA NEAT1 Facilitates Glioma Progression via Stabilizing PGK1
LncRNA NEAT1 Facilitates Glioma Progression via Stabilizing PGK1
Abstract Background: Long noncoding RNA NEAT1 has been implicated in glioma progression. However, the effect of NEAT1 on glycolysis of glioma cell and the potential mechani...
Mechano-sensing role of oncogenic lncRNA NEAT1 on soft vs. stiff substrates and its implications for glioblastoma progression
Mechano-sensing role of oncogenic lncRNA NEAT1 on soft vs. stiff substrates and its implications for glioblastoma progression
Abstract Long non-coding RNAs (lncRNAs) have gained increasing recognition as key regulators of cancer biology, overturning their earlier classification as non-func...

Back to Top