Authors
Jonathan E Kohn, Ian S Millett, Jaby Jacob, Bojan Zagrovic, Thomas M Dillon, Nikolina Cingel, Robin S Dothager, Soenke Seifert, P Thiyagarajan, Tobin R Sosnick, M Zahid Hasan, Vijay S Pande, Ingo Ruczinski, Sebastian Doniach, Kevin W Plaxco
Publication date
2004/8/24
Journal
Proceedings of the National Academy of Sciences
Volume
101
Issue
34
Pages
12491-12496
Publisher
National Academy of Sciences
Description
Spectroscopic studies have identified a number of proteins that appear to retain significant residual structure under even strongly denaturing conditions. Intrinsic viscosity, hydrodynamic radii, and small-angle x-ray scattering studies, in contrast, indicate that the dimensions of most chemically denatured proteins scale with polypeptide length by means of the power-law relationship expected for random-coil behavior. Here we further explore this discrepancy by expanding the length range of characterized denatured-state radii of gyration (RG) and by reexamining proteins that reportedly do not fit the expected dimensional scaling. We find that only 2 of 28 crosslink-free, prosthetic-group-free, chemically denatured polypeptides deviate significantly from a power-law relationship with polymer length. The RG of the remaining 26 polypeptides, which range from 16 to 549 residues, are well fitted (r2 = 0.988) by a power-law …
Total citations
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Scholar articles
JE Kohn, IS Millett, J Jacob, B Zagrovic, TM Dillon… - Proceedings of the National Academy of Sciences, 2004