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Observation of conformational changes that underlie the catalytic cycle of Xrn2

Nature Chemical Biology. 2022-10; 
Jan H Overbeck, David Stelzig, Anna-Lisa Fuchs, Jan Philip Wurm, Remco Sprangers
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摘要

Nuclear magnetic resonance (NMR) methods that quantitatively probe motions on molecular and atomic levels have propelled the understanding of biomolecular processes for which static structures cannot provide a satisfactory description. In this work, we studied the structure and dynamics of the essential 100-kDa eukaryotic 5'→3' exoribonuclease Xrn2. A combination of complementary fluorine and methyl-TROSY NMR spectroscopy reveals that the apo enzyme is highly dynamic around the catalytic center. These observed dynamics are in agreement with a transition of the enzyme from the ground state into a catalytically competent state. We show that the conformational equilibrium in Xrn2 shifts substantially toward the ... More

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