4.8 Article

Structural and Dynamic Basis for Low-Affinity, High-Selectivity Binding of L-Glutamine by the Glutamine Riboswitch

Journal

CELL REPORTS
Volume 13, Issue 9, Pages 1800-1813

Publisher

CELL PRESS
DOI: 10.1016/j.celrep.2015.10.062

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Funding

  1. US Department of Energy
  2. NIH [1 U19 CA179564, P01 GM0066275, R01 GM112940, 5T32GM088118-05]
  3. New York University
  4. Memorial Sloan-Kettering Cancer Center Support Grant/Core Grant [P30 CA008748]

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Naturally occurring L-glutamine riboswitches occur in cyanobacteria and marine metagenomes, where they reside upstream of genes involved in nitrogen metabolism. By combining X-ray, NMR, and MD, we characterized an L-glutamine-dependent conformational transition in the Synechococcus elongatus glutamine riboswitch from tuning fork to L-shaped alignment of stem segments. This transition generates an open ligand-binding pocket with L-glutamine selectivity enforced by Mg2+-mediated intermolecular interactions. The transition also stabilizes the P1 helix through a long-range linchpin'' Watson-Crick G-C pair-capping interaction, while melting a short helix below P1 potentially capable of modulating downstream readout. NMR data establish that the ligand-free glutamine riboswitch in Mg2+ solution exists in a slow equilibrium between flexible tuning fork and a minor conformation, similar, but not identical, to the L-shaped bound conformation. We propose that an open ligand-binding pocket combined with a high conformational penalty for forming the ligand-bound state provide mechanisms for reducing binding affinity while retaining high selectivity.

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