Title of article
Protein Vivisection Reveals Elusive Intermediates in Folding
Author/Authors
Zhongzhou Zheng، نويسنده , , Tobin R. Sosnick، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2010
Pages
12
From page
777
To page
788
Abstract
Although most folding intermediates escape detection, their characterization is crucial to the elucidation of folding mechanisms. Here, we outline a powerful strategy to populate partially unfolded intermediates: A buried aliphatic residue is substituted with a charged residue (e.g., Leu → Glu−) to destabilize and unfold a specific region of the protein. We applied this strategy to ubiquitin, reversibly trapping a folding intermediate in which the β5-strand is unfolded. The intermediate refolds to a native-like structure upon charge neutralization under mildly acidic conditions. Characterization of the trapped intermediate using NMR and hydrogen exchange methods identifies a second folding intermediate and reveals the order and free energies of the two major folding events on the native side of the rate-limiting step. This general strategy may be combined with other methods and have broad applications in the study of protein folding and other reactions that require trapping of high-energy states.
Keywords
native-state hydrogen exchange , NMR , ubiquitin , psi-analysis , protein engineering
Journal title
Journal of Molecular Biology
Serial Year
2010
Journal title
Journal of Molecular Biology
Record number
1251465
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