AI Article Synopsis

  • Riboswitches are RNA sequences that control gene expression by changing shape when specific metabolites bind to them.
  • Recent studies using techniques like single-molecule FRET and SHAPE have investigated the folding pathway of an adenine riboswitch, revealing the existence of a crucial structural intermediate during the binding process.
  • This intermediate state facilitates ligand recognition and helps shape the riboswitch's final structure, improving its ability to detect metabolites and regulate genes.

Article Abstract

Riboswitches are RNA sequences that regulate gene expression by undergoing structural changes upon the specific binding of cellular metabolites. Crystal structures of purine-sensing riboswitches have revealed an intricate network of interactions surrounding the ligand in the bound complex. The mechanistic details about how the aptamer folding pathway is involved in the formation of the metabolite binding site have been previously shown to be highly important for the riboswitch regulatory activity. Here, a combination of single-molecule FRET and SHAPE assays have been used to characterize the folding pathway of the adenine riboswitch from Vibrio vulnificus. Experimental evidences suggest a folding process characterized by the presence of a structural intermediate involved in ligand recognition. This intermediate state acts as an open conformation to ensure ligand accessibility to the aptamer and folds into a structure nearly identical to the ligand-bound complex through a series of structural changes. This study demonstrates that the add riboswitch relies on the folding of a structural intermediate that pre-organizes the aptamer global structure and the ligand binding site to allow efficient metabolite sensing and riboswitch genetic regulation.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8191784PMC
http://dx.doi.org/10.1093/nar/gkab307DOI Listing

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