Proceedings of the National Academy of Sciences · 2003 · 567 citations · 34 references
Exponential EnrichmentTenascin-c AptamerEngineeringMolecular BiologyComplex SystemsImmunotherapyCancer BiologyGliomaNucleic Acid BiomarkersTumor BiologyNeuro-oncologyTumor HeterogeneityTumor Cell SelexAnti-cancer AgentRadiation OncologyCancer ResearchOncogenic AgentTumor TargetingCell BiologyTumor MicroenvironmentCancer GenomicsSystems BiologyMedicineDna AptamerDrug DiscoverySystematic Evolution
The targeting of molecular repertoires to complex systems rather than biochemically pure entities is an accessible approach that can identify proteins of biological interest. We have probed antigens presented by a monolayer of tumor cells for their ability to interact with a pool of aptamers. A glioblastoma-derived cell line, U251, was used as the target for systematic evolution of ligands by exponential enrichment by using a single-stranded DNA library. We isolated specifically interacting oligonucleotides, and biochemical strategies were used to identify the protein target for one of the aptamers. Here we characterize the interaction of the DNA aptamer, GBI-10, with tenascin-C, an extracellular protein found in the tumor matrix. Tenascin-C is believed to be involved in both embryogenesis and oncogenesis pathways. Systematic evolution of ligands by exponential enrichment appears to be a successful strategy for the a priori identification of targets of biological interest within complex systems.
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In vitro selection of RNA molecules that bind specific ligands
Andrew D. Ellington, Jack W. Szostak · Nature · 1990 · 9.6K citations
Searching for Peptide Ligands with an Epitope Library
Jamie K. Scott, George P. Smith · Science · 1990 · 2.1K citations
James D. Marks, Hennie R. Hoogenboom, Timothy P. Bonnert et al. · Journal of Molecular Biology · 1991 · 1.6K citations