A guanosine-centric mechanism for RNA chaperone function.
basic_science · Level V
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- Record sourced from PubMed, PMID 23470731.
- Also identified by DOI 10.1126/science.1230715 and PMC identifier 4338410.
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Abstract
RNA chaperones are ubiquitous, heterogeneous proteins essential for RNA structural biogenesis and function. We investigated the mechanism of chaperone-mediated RNA folding by following the time-resolved dimerization of the packaging domain of a retroviral RNA at nucleotide resolution. In the absence of the nucleocapsid (NC) chaperone, dimerization proceeded through multiple, slow-folding intermediates. In the presence of NC, dimerization occurred rapidly through a single structural intermediate. The RNA binding domain of heterogeneous nuclear ribonucleoprotein A1 protein, a structurally unrelated chaperone, also accelerated dimerization. Both chaperones interacted primarily with guanosine residues. Replacing guanosine with more weakly pairing inosine yielded an RNA that folded rapidly without a facilitating chaperone. These results show that RNA chaperones can simplify RNA folding landscapes by weakening intramolecular interactions involving guanosine and explain many RNA chaperone activities.
Medical subject headings
- Guanosine
- Molecular Chaperones
- Moloney murine leukemia virus
- Nucleocapsid Proteins
- RNA, Viral