1. Selection of bifunctional RNAs with specificity for arginine and lipid membranes.
- Author
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Janas T, Sapoń K, and Janas T
- Subjects
- Humans, Membrane Microdomains metabolism, Membrane Microdomains chemistry, Aptamers, Nucleotide chemistry, Aptamers, Nucleotide metabolism, Aptamers, Nucleotide genetics, Cell Line, Tumor, RNA-Binding Proteins metabolism, RNA-Binding Proteins chemistry, RNA-Binding Proteins genetics, Base Sequence, RNA metabolism, RNA chemistry, RNA genetics, Exosomes metabolism, Exosomes genetics, Exosomes chemistry, Fluorescence Resonance Energy Transfer, Arginine chemistry, Arginine metabolism, Liposomes chemistry, Liposomes metabolism
- Abstract
The molecular mechanisms of selective RNA loading into exosomes and other extracellular vesicles are not yet completely understood. In order to show that a pool of RNA sequences binds both the amino acid arginine and lipid membranes, we constructed a bifunctional RNA 10Arg aptamer specific for arginine and lipid vesicles. The preference of RNA 10Arg for lipid rafts was visualized and confirmed using FRET microscopy in neuroblastoma cells. The selection-amplification (SELEX) method using a doped (with the other three nucleotides) pool of RNA 10Arg sequences yielded several RNA 10Arg(D) sequences, and the affinities of these RNAs both to arginine and liposomes are improved in comparison to pre-doped RNA. Generation of these bispecific aptamers supports the hypothesis that an RNA molecule can bind both to RNA-binding proteins (RBPs) through arginine within the RBP-binding site and to membrane lipid rafts, thus facilitating RNA loading into exosomes and other extracellular vesicles., (© 2024 Federation of European Biochemical Societies.)
- Published
- 2024
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