Institute for Organic Chemistry and Chemical Biology, Center for Biomolecular Magnetic Resonance (BMRZ), Johann Wolfgang Goethe-Universität Frankfurt, Max-von-Laue-Str. 7, 60438, Frankfurt, Germany.
Angew Chem Int Ed Engl. 2020 Dec 1;59(49):22086-22091. doi: 10.1002/anie.202006945. Epub 2020 Sep 25.
The C40A/C82A double mutant of barstar has been shown to undergo cold denaturation above the water freezing point. By rapidly applying radio-frequency power to lossy aqueous samples, refolding of barstar from its cold-denatured state can be followed by real-time NMR spectroscopy. Since temperature-induced unfolding and refolding is reversible for this double mutant, multiple cycling can be utilized to obtain 2D real-time NMR data. Barstar contains two proline residues that adopt a mix of cis and trans conformations in the low-temperature-unfolded state, which can potentially induce multiple folding pathways. The high time resolution real-time 2D-NMR measurements reported here show evidence for multiple folding pathways related to proline isomerization, and stable intermediates are populated. By application of advanced heating cycles and state-correlated spectroscopy, an alternative folding pathway circumventing the rate-limiting cis-trans isomerization could be observed. The kinetic data revealed intermediates on both, the slow and the fast folding pathway.
已证实 C40A/C82A 双突变的 barstar 在水的冰点以上会发生冷变性。通过向有损耗的水性样品快速施加射频功率,可以通过实时 NMR 光谱学来跟踪 barstar 从冷变性状态下的复性。由于该双突变体的温度诱导展开和复性是可逆的,因此可以进行多次循环以获得 2D 实时 NMR 数据。Barstar 包含两个脯氨酸残基,它们在低温展开状态下采用顺式和反式构象的混合物,这可能会诱导多种折叠途径。这里报道的高时间分辨率实时 2D-NMR 测量结果表明,与脯氨酸异构化相关的多种折叠途径存在证据,并且存在稳定的中间体。通过应用先进的加热循环和状态相关光谱学,可以观察到一种绕过限速顺反异构化的替代折叠途径。动力学数据揭示了两条途径(慢途径和快途径)上的中间体。