Conservation of side-chain dynamics within a protein family

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Abstract

The question of protein dynamics and its relevance to function is currently a topic of great interest. Proteins are particularly dynamic at the side-chain level on the time scale of picoseconds to nanoseconds. Here, we present a comparison of NMR-monitored side-chain motion between three PDZ domains of ∼30% sequence identity and show that the side-chain dynamics display nontrivial conservation. Methyl 2H relaxation was carried out to determine side-chain order parameters (S 2), which were found to be more similar than naively expected from sequence, local packing, or a combination of the two. Thus, the dynamics of a rather distant homologue appears to be an excellent predictor of a protein's side-chain dynamics and, on average, better than current structure-based methods. Fast side-chain dynamics therefore display a high level of organization associated with global fold. Beyond simple conservation, the analysis herein suggests that the pattern of side-chain flexibility has significant contributions from nonlocal elements of the PDZ fold, such as correlated motions, and that the conserved dynamics may directly support function. Copyright © 2009 American Chemical Society.

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Law, A. B., Fuentes, E. J., & Lee, A. L. (2009). Conservation of side-chain dynamics within a protein family. Journal of the American Chemical Society, 131(18), 6322–6323. https://doi.org/10.1021/ja809915a

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