Interplay between partner and ligand facilitates the folding and binding of an intrinsically disordered protein
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Authors
Rogers, Joseph M
Oleinikovas, Vladimiras
Shammas, Sarah
Wong, Chi T
De, Sancho David
Baker, Christopher M
Publication Date
2014-10-13Journal Title
PNAS
ISSN
0027-8424
Publisher
PNAS
Volume
111
Pages
15420-15425
Language
English
Type
Article
Metadata
Show full item recordCitation
Rogers, J. M., Oleinikovas, V., Shammas, S., Wong, C. T., De, S. D., Baker, C. M., & Clarke, J. (2014). Interplay between partner and ligand facilitates the folding and binding of an intrinsically disordered protein. PNAS, 111 15420-15425. https://doi.org/10.1073/pnas.1409122111
Abstract
Protein–protein interactions are at the heart of regulatory and signalling processes in the cell. In many interactions, one or both proteins are disordered before association. However, this disorder in the unbound state does not prevent many of these proteins folding to a well-defined, ordered structure in the bound state. Here we examine a typical system, where a small disordered protein (PUMA, p53 upregulated modulator of apoptosis) folds to an α-helix when bound to a groove on the surface of a folded protein (MCL-1, induced myeloid leukemia cell differentiation protein). We follow the association of these proteins using rapid-mixing stopped flow, and examine how the kinetic behavior is perturbed by denaturant and carefully chosen mutations. We demonstrate the utility of methods developed for the study of monomeric protein folding, including β-Tanford values, Leffler α, Φ-value analysis, and coarse-grained simulations, and propose a self-consistent mechanism for binding. Folding of the disordered protein before binding does not appear to be required and few, if any, specific interactions are required to commit to association. The majority of PUMA folding occurs after the transition state, in the presence of MCL-1. We also examine the role of the side chains of folded MCL-1 that make up the binding groove and find that many favor equilibrium binding but, surprisingly, inhibit the association process.
Sponsorship
Wellcome Trust (095195/Z/10/Z)
EPSRC (EP/J016764/1)
Identifiers
External DOI: https://doi.org/10.1073/pnas.1409122111
This record's URL: https://www.repository.cam.ac.uk/handle/1810/246212
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