The crystal structure of the dachshund domain of human snon reveals flexibility in the putative protein interaction surface

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Abstract

The human SnoN is an oncoprotein that interacts with several transcription-regulatory proteins such as the histone-deacetylase, N-CoR containing co-repressor complex and Smad proteins. This study presents the crystal structure of the Dachshund homology domain of human SnoN. The structure reveals a groove composed of conserved residues with characteristic properties of a protein-interaction surface. A comparison of the 12 monomers in the asymmetric unit reveals the presence of two major conformations: an open conformation with a well accessible groove and a tight conformation with a less accessible groove. The variability in the backbone between the open and the tight conformations matches the differences seen in previously determined structures of individual Dachshund homology domains, suggesting a general plasticity within this fold family. The flexibility observed in the putative protein binding groove may enable SnoN to recognize multiple interaction partners. ©2010 Nyman et al.

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Nyman, T., Trésaugues, L., Welin, M., Lehtiö, L., Flodin, S., Persson, C., … Nordlund, P. (2010). The crystal structure of the dachshund domain of human snon reveals flexibility in the putative protein interaction surface. PLoS ONE, 5(9). https://doi.org/10.1371/journal.pone.0012907

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