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

Stalling of Transcription by Putative G-quadruplex Sequences and CRISPR-dCas9

View through CrossRef
ABSTRACT Putative G-quadruplex forming sequences (PQS) have been identified in promoter sequences of prominent genes that are implicated among others in cancer and neurological disorders. We explored mechanistic aspects of CRISPR-dCas9-mediated gene expression regulation, which is transient and sequence specific unlike alternative approaches that lack such specificity or create permanent mutations, using the PQS in tyrosine hydroxylase ( TH ) and c-Myc promoters as model systems. We performed in vitro ensemble and single molecule investigations to study whether G-quadruplex (GQ) structures or dCas9 impede T7 RNA polymerase (RNAP) elongation process and whether orientation of these factors is significant. Our results demonstrate that dCas9 is more likely to block RNAP progression when the non-template strand is targeted. While the GQ in TH promoter was effectively destabilized when the dCas9 target site partially overlapped with the PQS, the c-Myc GQ remained folded and stalled RNAP elongation. We also determined that a minimum separation between the transcription start site and the dCas9 target site is required for effective stalling of RNAP by dCas9. Our study provides significant insights about the factors that impact dCas9-mediated transcription regulation when dCas9 targets the vicinity of sequences that form secondary structures and provides practical guidelines for designing guide RNA sequences.
Title: Stalling of Transcription by Putative G-quadruplex Sequences and CRISPR-dCas9
Description:
ABSTRACT Putative G-quadruplex forming sequences (PQS) have been identified in promoter sequences of prominent genes that are implicated among others in cancer and neurological disorders.
We explored mechanistic aspects of CRISPR-dCas9-mediated gene expression regulation, which is transient and sequence specific unlike alternative approaches that lack such specificity or create permanent mutations, using the PQS in tyrosine hydroxylase ( TH ) and c-Myc promoters as model systems.
We performed in vitro ensemble and single molecule investigations to study whether G-quadruplex (GQ) structures or dCas9 impede T7 RNA polymerase (RNAP) elongation process and whether orientation of these factors is significant.
Our results demonstrate that dCas9 is more likely to block RNAP progression when the non-template strand is targeted.
While the GQ in TH promoter was effectively destabilized when the dCas9 target site partially overlapped with the PQS, the c-Myc GQ remained folded and stalled RNAP elongation.
We also determined that a minimum separation between the transcription start site and the dCas9 target site is required for effective stalling of RNAP by dCas9.
Our study provides significant insights about the factors that impact dCas9-mediated transcription regulation when dCas9 targets the vicinity of sequences that form secondary structures and provides practical guidelines for designing guide RNA sequences.

Related Results

dCas9-metabolic enzyme fusions modulate global and locus-specific gene expression
dCas9-metabolic enzyme fusions modulate global and locus-specific gene expression
Abstract Central metabolites function as essential co-substrates for chromatin-modifying enzymes, directly linking cellular metabolism to chromat...
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...
Combining the CRISPR Activation and Interference Capabilities Using dCas9 and G-Quadruplex Structures
Combining the CRISPR Activation and Interference Capabilities Using dCas9 and G-Quadruplex Structures
ABSTRACT We demonstrate that both CRISPR interference and CRISPR activation can be achieved at RNA and protein levels by targeting the vicinity o...
Comparative Analysis and Rational Design of dCas9-VP64 Variants for CRISPR Activation
Comparative Analysis and Rational Design of dCas9-VP64 Variants for CRISPR Activation
ABSTRACT CRISPR/Cas9-mediated transcriptional activation (CRISPRa) is a powerful tool for investigating complex biological phenomena. Although CR...
Combining CRISPR activation and interference capabilities using dCas9 and G-quadruplex structures
Combining CRISPR activation and interference capabilities using dCas9 and G-quadruplex structures
Abstract We demonstrate that both Clustered regularly interspaced short palindromic repeats (CRISPR) interference and CRISPR activation can be achieved at RNA and...
Untangling or further entangling? Revelation of the complicated world of nucleic acid quadruplex folds
Untangling or further entangling? Revelation of the complicated world of nucleic acid quadruplex folds
Abstract Quadruplexes are four-stranded nucleic acid secondary structures playing diverse biological roles. A recent meticulous analysis of known...
Discovery & Evaluation of novel fluorescence molecules for selective recognition of G-quadruplexes structure
Discovery & Evaluation of novel fluorescence molecules for selective recognition of G-quadruplexes structure
Abstract Currently, G-quadruplex structure targeting strategies are considered as a promising anticancer approach. In the search of selective and...

Back to Top