Gene Silencing Nucleic Acids Designed by Scanning Arrays: Anti-EGFR Activity of siRNA, Ribozyme and DNA Enzymes Targeting a Single Hybridization-accessible Region using the Same Delivery System
- 1 August 2003
- journal article
- research article
- Published by Taylor & Francis in Journal of Drug Targeting
- Vol. 11 (7) , 449-456
- https://doi.org/10.1080/1061186042000207039
Abstract
Gene silencing nucleic acids such as ribozymes, DNA enzymes (DNAzymes), antisense oligonucleotides (ODNs), and small interfering (si)RNA rely on hybridization to accessible sites within target mRNA for activity. However, the accurate prediction of hybridization accessible sites within mRNAs for design of effective gene silencing reagents has been problematic. Here we have evaluated the use of scanning arrays for the effective design of ribozymes, DNAzymes and siRNA sequences targeting the epidermal growth factor receptor (EGFR) mRNA. All three gene silencing nucleic acids designed to be complementary to the same array-defined hybridization accessible-site within EGFR mRNA were effective in inhibiting the growth of EGFR over-expressing A431 cancer cells in a dose dependent manner when delivered using the cationic lipid (Lipofectin) delivery system. Effects on cell growth were correlated in all cases with concomitant dose-dependent reduction in EGFR protein expression. The control sequences did not markedly alter cell growth or EGFR expression. The ribozyme and DNAzyme exhibited similar potency in inhibiting cell growth with IC50 values of around 750 nM. In contrast, siRNA was significantly more potent with an IC50 of about 100 nM when delivered with Lipofectin. The potency of siRNA was further enhanced when Oligofectamine was used to further improve both the cellular uptake and subcellular distribution of fluorescently labelled siRNA. Our studies show that active siRNAs can be designed using hybridization accessibility profiles on scanning arrays and that siRNAs targeting the same array-designed hybridization accessible site in EGFR mRNA and delivered using the same delivery system are more potent than ribozymes and DNAzymes in inhibiting EGFR expression in A431 cells.Keywords
This publication has 22 references indexed in Scilit:
- Functional siRNAs and miRNAs Exhibit Strand BiasCell, 2003
- Asymmetry in the Assembly of the RNAi Enzyme ComplexCell, 2003
- Killing the messenger: short RNAs that silence gene expressionNature Reviews Molecular Cell Biology, 2003
- The Efficacy of Small Interfering RNAs Targeted to the Type 1 Insulin-like Growth Factor Receptor (IGF1R) Is Influenced by Secondary Structure in the IGF1R TranscriptJournal of Biological Chemistry, 2003
- Efficient Reduction of Target RNAs by Small Interfering RNA and RNase H-dependent Antisense AgentsJournal of Biological Chemistry, 2003
- Comparison of the Suppressive Effects of Antisense Oligonucleotides and siRNAs Directed Against the Same Targets in Mammalian CellsAntisense and Nucleic Acid Drug Development, 2003
- Gene silencing in mammals by small interfering RNAsNature Reviews Genetics, 2002
- Antisense ArraysMolecular Cell Biology Research Communications, 2000
- Mechanism and Utility of an RNA-Cleaving DNA EnzymeBiochemistry, 1998
- Antisense Technology: Selection and Delivery of Optimally Acting Antisense OligonucleotidesJournal of Drug Targeting, 1998