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Specificity of the initial collapse in the folding of the cold shock protein
Authors:Magg Christine  Kubelka Jan  Holtermann Georg  Haas Elisha  Schmid Franz X
Institution:Laboratorium für Biochemie und Bayreuther Zentrum für Molekulare Biowissenschaften, Universit?t Bayreuth, D-95440 Bayreuth, Germany.
Abstract:The two-state folding reaction of the cold shock protein from Bacillus caldolyticus (Bc-Csp) is preceded by a rapid chain collapse. A fast shortening of intra-protein distances was revealed by F?rster resonance energy transfer (FRET) measurements with protein variants that carried individual pairs of donor and acceptor chromophores at various positions along the polypeptide chain. Here we investigated the specificity of this rapid compaction. Energy transfer experiments that probed the stretching of strand beta2 and the close approach between the strands beta1 and beta2 revealed that the beta1-beta2 hairpin is barely formed in the collapsed form, although it is native-like in the folding transition state of Bc-Csp. The time course of the collapse could not be resolved by pressure or temperature jump experiments, indicating that the collapsed and extended forms are not separated by an energy barrier. The co-solute (NH4)2SO4 stabilizes both native Bc-Csp and the collapsed form, which suggests that the large hydrated SO4(2-) ions are excluded from the surface of the collapsed form in a similar fashion as they are excluded from folded Bc-Csp. Ethylene glycol increases the stability of proteins because it is excluded preferentially from the backbone, which is accessible in the unfolded state. The collapsed form of Bc-Csp resembles the unfolded form in its interaction with ethylene glycol, suggesting that in the collapsed form the backbone is still accessible to water and small molecules. Our results thus rule out that the collapsed form is a folding intermediate with native-like chain topology. It is better described as a mixture of compact conformations that belong to the unfolded state ensemble. However, some of its structural elements are reminiscent of the native protein.
Keywords:Bc-Csp and Bs-CspB  cold shock proteins from Bacillus caldolyticus and Bacillus subtilis  respectively  Bc-Csp*  Bc-Csp W8Y  the pseudo-wild-type protein used in this study  FRET  Förster resonance energy transfer  SAXS  small angle X-ray scattering  AEDANS  5-(((acetylamino)ethyl)amino)naphthalene-1-sulfonate  EDANS  5-(2-aminoethylamino)-naphthalene-1-sulfonate  GdmCl  guanidinium chloride  EG  ethylene glycol  [GdmCl]M  midpoint of a GdmCl-induced unfolding transition  NAWA  N-acetyl-tryptophanamide  λ  apparent rate constant of a folding reaction  kNU  microscopic rate constant and mNU (=?lnkNU/? [GdmCl])  kinetic m value of unfolding  kUN  mUN  microscopic rate constant and kinetic m value of refolding  R0  Förster distance  RN  RU  distance between donor and acceptor in the native and the unfolded protein  respectively  The donor/acceptor-labeled variants of Bc-Csp are denoted as i→j  In this short-hand notation the first number (i) stands for the location of the donor (Trp)  the second number (j) stands for the location of the acceptor (AEDANS)  which is linked via an engineered cysteine  As an example  50→2 stands for the variant Bc-Csp* E50W/Q2C-AEDANS that contains the donor Trp at position 50 and the acceptor AEDANS at position 2
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