4.7 Article

The folding mechanism of a β-sheet:: The WW domain

Journal

JOURNAL OF MOLECULAR BIOLOGY
Volume 311, Issue 2, Pages 373-393

Publisher

ACADEMIC PRESS LTD- ELSEVIER SCIENCE LTD
DOI: 10.1006/jmbi.2001.4873

Keywords

protein folding; hairpin; phi-value; hydrophobic effect; Kramers theory

Funding

  1. NIGMS NIH HHS [R02GM51105, R01 GM051105, R01 GM057175] Funding Source: Medline

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The folding thermodynamics and kinetics of the Pin WW domain, a three-stranded antiparallel beta -sheet, have been characterized extensively. Folding and activation free energies were determined as a function of temperature for 16 mutants, which sample all strands and turns of the molecule. The mutational phi value (Phi (m)) diagram is a smooth function of sequence, indicating a prevalence of local interactions in the transition state (TS). At 37 degreesC, the diagram has a single pronounced maximum at turn 1: the rate-limiting step during folding is the formation of loop 1. In contrast, key residues for thermodynamic stability are located in the strand hydrophobic clusters, indicating that factors contributing to protein stability and folding kinetics are not correlated. The location of the TS along the entropic reaction coordinate Phi (T), obtained by temperature-tuning the kinetics, reveals that sufficiently destabilizing mutants in loop 2 or in the Leu7-Trp11-Tyr24-Pro37 hydrophobic cluster can cause a switch to a late TS. Phi (m) analysis is usually applied perturbatively (methyl truncation), but with Phi (T) to quantitatively assess TS shifts along a reaction coordinate, more severe mutations can be used to probe regions of the free energy surface beyond the TS. (C) 2001 Academic Press.

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