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Autor(en) / Beteiligte
Titel
Studying micro to millisecond protein dynamics using simple amide 15N CEST experiments supplemented with major-state R2 and visible peak-position constraints
Ist Teil von
  • Journal of biomolecular NMR, 2023-08, Vol.77 (4), p.165-181
Ort / Verlag
Dordrecht: Springer Netherlands
Erscheinungsjahr
2023
Quelle
Alma/SFX Local Collection
Beschreibungen/Notizen
  • Over the last decade amide 15 N CEST experiments have emerged as a popular tool to study protein dynamics that involves exchange between a ‘visible’ major state and sparsely populated ‘invisible’ minor states. Although initially introduced to study exchange between states that are in slow exchange with each other (typical exchange rates of, 10 to 400 s −1 ), they are now used to study interconversion between states on the intermediate to fast exchange timescale while still using low to moderate (5 to 350 Hz) ‘saturating’ B 1 fields. The 15 N CEST experiment is very sensitive to exchange as the exchange delay T EX can be quite long (~0.5 s) allowing for a large number of exchange events to occur making it a very powerful tool to detect minor sates populated ( p minor ) to as low as 1%. When systems are in fast exchange and the 15 N CEST data has to be described using a model that contains exchange, the exchange parameters are often poorly defined because the χ red 2 versus p minor and χ red 2 versus exchange rate ( k ex ) plots can be quite flat with shallow or no minima and the analysis of such 15 N CEST data can lead to wrong estimates of the exchange parameters due to the presence of ‘spurious’ minima. Here we show that the inclusion of experimentally derived constraints on the intrinsic transverse relaxation rates and the inclusion of visible state peak-positions during the analysis of amide 15 N CEST data acquired with moderate B 1 values (~50 to ~350 Hz) results in convincing minima in the χ red 2 versus p minor and the χ red 2 versus k ex plots even when exchange occurs on the 100 μs timescale. The utility of this strategy is demonstrated on the fast-folding Bacillus stearothermophilus peripheral subunit binding domain that folds with a rate constant ~10 4  s −1 . Here the analysis of 15 N CEST data alone results in χ red 2 versus p minor and χ red 2 versus k ex plots that contain shallow minima, but the inclusion of visible-state peak positions and restraints on the intrinsic transverse relaxation rates of both states during the analysis of the 15 N CEST data results in pronounced minima in the χ red 2 versus p minor and χ red 2 versus k ex plots and precise exchange parameters even in the fast exchange regime ( k ex / | Δ ω | ~5). Using this strategy we find that the folding rate constant of PSBD is invariant (~10,500 s −1 ) from 33.2 to 42.9 °C while the unfolding rates (~70 to ~500 s −1 ) and unfolded state populations (~0.7 to ~4.3%) increase with temperature. The results presented here show that protein dynamics occurring on the 10 to 10 4  s −1 timescale can be studied using amide 15 N CEST experiments.
Sprache
Englisch
Identifikatoren
ISSN: 0925-2738
eISSN: 1573-5001
DOI: 10.1007/s10858-023-00419-2
Titel-ID: cdi_pubmedcentral_primary_oai_pubmedcentral_nih_gov_7615914

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