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Crucial Roles of Two Hydrated Mg Ions in Reaction Catalysis of the Pistol Ribozyme. | LitMetric

Crucial Roles of Two Hydrated Mg Ions in Reaction Catalysis of the Pistol Ribozyme.

Angew Chem Int Ed Engl

Institute of Organic Chemistry and Center for Molecular Biosciences, Leopold-Franzens University, Innrain 80-82, 6020, Innsbruck, Austria.

Published: February 2020

AI Article Synopsis

  • Pistol ribozymes are a class of small self-cleaving RNAs, with crystal structures providing insights into their catalytic mechanism during phosphodiester cleavage.
  • The study identifies the critical roles of two hydrated magnesium ions, with one acting as an acid catalyst and the other stabilizing the product's conformation after cleavage.
  • This research enhances our understanding of how ribozymes facilitate chemical reactions, shedding light on their functional mechanisms.

Article Abstract

Pistol ribozymes constitute a new class of small self-cleaving RNAs. Crystal structures have been solved, providing three-dimensional snapshots along the reaction coordinate of pistol phosphodiester cleavage, corresponding to the pre-catalytic state, a vanadate mimic of the transition state, and the product. The results led to the proposed underlying chemical mechanism. Importantly, a hydrated Mg ion remains innersphere-coordinated to N7 of G33 in all three states, and is consistent with its likely role as acid in general acid base catalysis (δ and β catalysis). Strikingly, the new structures shed light on a second hydrated Mg ion that approaches the scissile phosphate from its binding site in the pre-cleavage state to reach out for water-mediated hydrogen bonding in the cyclophosphate product. The major role of the second Mg ion appears to be the stabilization of product conformation. This study delivers a mechanistic understanding of ribozyme-catalyzed backbone cleavage.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7027511PMC
http://dx.doi.org/10.1002/anie.201912522DOI Listing

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