AI Article Synopsis

  • - RNA shows a wide range of shapes and structures (heterogeneous conformations) when examined closely, even if it starts as the same sequence.
  • - Experiments using atomic force microscopy (AFM) on the adenosylcobalamin riboswitch aptamer demonstrate that multiple stable forms of an RNA can exist at the same time, and they all maintain similar secondary structures.
  • - The study highlights that understanding RNA's behavior in a real biological environment is more complicated than traditional protein structures, and this could change how we study RNA's structure overall.

Article Abstract

RNA flexibility is reflected in its heterogeneous conformation. Through direct visualization using atomic force microscopy (AFM) and the adenosylcobalamin riboswitch aptamer domain as an example, we show that a single RNA sequence folds into conformationally and architecturally heterogeneous structures under near-physiological solution conditions. Recapitulated 3D topological structures from AFM molecular surfaces reveal that all conformers share the same secondary structural elements. Only a population-weighted cohort, not any single conformer, including the crystal structure, can account for the ensemble behaviors observed by small-angle X-ray scattering (SAXS). All conformers except one are functionally active in terms of ligand binding. Our findings provide direct visual evidence that the sequence-structure relationship of RNA under physiologically relevant solution conditions is more complex than the one-to-one relationship for well-structured proteins. The direct visualization of conformational and architectural ensembles at the single-molecule level in solution may suggest new approaches to RNA structural analyses.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9911696PMC
http://dx.doi.org/10.1038/s41467-023-36184-xDOI Listing

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