Unfolding and Folding of the Three-Helix Bundle Protein KIX in the Absence of Solvent

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Abstract

Electron capture dissociation was used to probe the structure, unfolding, and folding of KIX ions in the gas phase. At energies for vibrational activation that were sufficiently high to cause loss of small molecules such as NH3 and H2O by breaking of covalent bonds in about 5% of the KIX (M + nH)n+ ions with n = 7–9, only partial unfolding was observed, consistent with our previous hypothesis that salt bridges play an important role in stabilizing the native solution fold after transfer into the gas phase. Folding of the partially unfolded ions on a timescale of up to 10 s was observed only for (M + nH)n+ ions with n = 9, but not n = 7 and n = 8, which we attribute to differences in the distribution of charges within the (M + nH)n+ ions. [Figure not available: see fulltext.]

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Schennach, M., Schneeberger, E. M., & Breuker, K. (2016). Unfolding and Folding of the Three-Helix Bundle Protein KIX in the Absence of Solvent. Journal of the American Society for Mass Spectrometry, 27(6), 1079–1088. https://doi.org/10.1007/s13361-016-1363-7

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