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. 2014 May 14;136(19):6818-21.
doi: 10.1021/ja501602t. Epub 2014 May 2.

Amino acid networks in a (β/α)₈ barrel enzyme change during catalytic turnover

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Amino acid networks in a (β/α)₈ barrel enzyme change during catalytic turnover

Jennifer M Axe et al. J Am Chem Soc. .

Abstract

Proteins can be viewed as small-world networks of amino acid residues connected through noncovalent interactions. Nuclear magnetic resonance chemical shift covariance analyses were used to identify long-range amino acid networks in the α subunit of tryptophan synthase both for the resting state (in the absence of substrate and product) and for the working state (during catalytic turnover). The amino acid networks observed stretch from the surface of the protein into the active site and are different between the resting and working states. Modification of surface residues on the network alters the structural dynamics of active-site residues over 25 Å away and leads to changes in catalytic rates. These findings demonstrate that amino acid networks, similar to those studied here, are likely important for coordinating structural changes necessary for enzyme function and regulation.

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