Abstract
Protein folding and unfolding are crucial for a range of biological phenomena and human diseases. Defining the structural properties of the involved transient species is therefore of prime interest. Using a combination of cold denaturation with NMR spectroscopy, we reveal detailed insight into the unfolding of the homodimeric repressor protein CylR2. Seven three-dimensional structures of CylR2 at temperatures from 25 °C to -16 °C reveal a progressive dissociation of the dimeric protein into a native-like monomeric intermediate followed by transition into a highly dynamic, partially folded state. The core of the partially folded state seems critical for biological function and misfolding. © 2013 Nature America, Inc. All rights reserved.
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CITATION STYLE
Jaremko, M., Jaremko, Ł., Kim, H. Y., Cho, M. K., Schwieters, C. D., Giller, K., … Zweckstetter, M. (2013). Cold denaturation of a protein dimer monitored at atomic resolution. Nature Chemical Biology, 9(4), 264–270. https://doi.org/10.1038/nchembio.1181
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