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Kinetic traps in the folding of beta alpha-repeat proteins: CheY initially misfolds before accessing the native conformation
Authors:Kathuria Sagar V  Day Iain J  Wallace Louise A  Matthews C Robert
Affiliation:Department of Biochemistry and Molecular Pharmacology, University of Massachusetts Medical School, Worcester, MA 01605, USA
Abstract:The βα-repeat class of proteins, represented by the (βα)8 barrel and the α/β/α sandwich, are among the most common structural platforms in biology. Previous studies on the folding mechanisms of these motifs have revealed or suggested that the initial event involves the submillisecond formation of a kinetically trapped species that must at least partially unfold before productive folding to the respective native conformation can occur. To test the generality of these observations, CheY, a bacterial response regulator, was subjected to an extensive analysis of its folding reactions. Although earlier studies had proposed the formation of an off-pathway intermediate, the data available were not sufficient to rule out an alternative on-pathway mechanism. A global analysis of single- and double-jump kinetic data, combined with equilibrium unfolding data, was used to show that CheY folds and unfolds through two parallel channels defined by the state of isomerization of a prolyl peptide bond in the active site. Each channel involves a stable, highly structured folding intermediate whose kinetic properties are better described as the properties of an off-pathway species. Both intermediates subsequently flow through the unfolded state ensemble and adopt the native cis-prolyl isomer prior to forming the native state. Initial collapse to off-pathway folding intermediates is a common feature of the folding mechanisms of βα-repeat proteins, perhaps reflecting the favored partitioning to locally determined substructures that cannot directly access the native conformation. Productive folding requires the dissipation of these prematurely folded substructures as a prelude to forming the larger-scale transition state that leads to the native conformation. Results from Gō-modeling studies in the accompanying paper elaborate on the topological frustration in the folding free-energy landscape of CheY.
Keywords:TIM, triose phosphate isomerase   αTS, α subunit of tryptophan synthase from Escherichia coli   IOLI, the 278-residue TIM barrel protein of unknown function encoded by the Bacillus subtilis iolI gene   sIGPS, indole-3-glycerol phosphate synthase from Sulfolobus solfataricus   FL, fluorescence spectroscopy   IBP, kinetic intermediate of CheY populated within the stopped-flow burst phase (<     ms)   N, native state of CheY   U, unfolded state of CheY   ILV, isoleucine, leucine and valine   BASiC, branched aliphatic side chain   VDW, van der Waals   ACO, absolute contact order
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