Abstract
Antisense and triplex oligonucleotides continue to demonstrate potential as mediators of gene-specific repression of protein synthesis. However, inefficient and heterogeneous cellular uptake, intracellular sequestration, and rapid intracellular and extracellular degradation represent obstacles to their eventual clinical utility. Efficient cellular delivery of targeted ribozymes can present similar problems. In this report we describe a system for circumventing these obstacles and producing large quantities of short, sequence-specific RNA oligonucleotides for use in these gene regulation strategies. The oligonucleotides are generated from a vector containing promoter, capping, and termination sequences from the human small nuclear U6 gene, surrounding a synthetic sequence incorporating the oligonucleotide of interest. In vivo, these oligonucleotides are produced constitutively and without cell type specificity in levels up to 5 x 10(6) copies per cell, reach steady-state levels of expression within 9 hours post-transfection, and are still readily detectable 7 days post-transfection. In addition, these oligonucleotides are retained in the nucleus, obtain a 5' gamma-monomethyl phosphate cap, and have an intracellular half-life of approximately one hour. This expression vector provides a novel and efficient method of intracellular delivery of antisense or triplex RNA oligonucleotides (and/or ribozymes) for gene regulation, as well as a cost-effective means of comparing the biological activity arising from a variety of different potential oligonucleotide sequences.
MeSH Terms
Base Sequence
Breast Neoplasms
Cell Line
Chimera
Cloning, Molecular
Dactinomycin/pharmacology
Female
Gene Expression Regulation/drug effects
Humans
Kidney
Kinetics
Molecular Sequence Data
Nucleic Acid Conformation
Oligodeoxyribonucleotides/chemical synthesis,pharmacology
Oligonucleotides, Antisense/chemical synthesis,pharmacology
RNA, Small Nuclear/biosynthesis,chemistry,genetics
Transfection
Tumor Cells, Cultured
Chemicals
Oligodeoxyribonucleotides
Oligonucleotides, Antisense
RNA, Small Nuclear
Dactinomycin
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Noonberg S B
Bioengineering Graduate Group, University of California, San Francisco 94143.
Scott G K
Garovoy M R
Benz C C
Hunt C A
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