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Inherent backbone dynamics fine-tune the functional plasticity of Tudor domains

Structure. 2021-06; 
Ashish A Kawale, Björn M Burmann
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Custom Vector Construction … The RfaH Tudor construct (101–162) was purchased from GenScript in a pET28b(+) vector backbone and expressed as an amino-terminal hexa-histidine tagged Sumo fusion protein. Protein purifications of RfaH Tudor and NusG Tudor were performed based on published … Get A Quote

摘要

Tudor domains are crucial for mediating a diversity of protein-protein or protein-DNA interactions involved in nucleic acid metabolism. Using solution NMR spectroscopy, we assess the comprehensive understanding of the dynamical properties of the respective Tudor domains from four different bacterial (Escherichia coli) proteins UvrD, Mfd, RfaH, and NusG involved in different aspects of bacterial transcription regulation and associated processes. These proteins are benchmarked to the canonical Tudor domain fold from the human SMN protein. The detailed analysis of protein backbone dynamics and subsequent analysis by the Lipari-Szabo model-free approach revealed subtle differences in motions of the amide-bond vecto... More

关键词

Tudor domain, backbone relaxation analysis, metamorphic proteins, protein dynamics, solution NMR spectroscopy