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首页> 外文期刊>Biophysical Journal >Relaxation dispersion NMR spectroscopy as a tool for detailed studies of protein folding.
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Relaxation dispersion NMR spectroscopy as a tool for detailed studies of protein folding.

机译:弛豫分散核磁共振光谱作为蛋白质折叠的详细研究工具。

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摘要

Characterization of the mechanisms by which proteins fold into their native conformations is important not only for protein structure prediction and design but also because protein misfolding intermediates may play critical roles in fibril formation that are commonplace in neurodegenerative disorders. In practice, the study of folding pathways is complicated by the fact that for the most part intermediates are low-populated and short-lived so that biophysical studies are difficult. Due to recent methodological advances, relaxation dispersion NMR spectroscopy has emerged as a particularly powerful tool to obtain high-resolution structural information about protein folding events on the millisecond timescale. Applications of the methodology to study the folding of SH3 domains have shown that folding proceeds via previously undetected on-pathway intermediates, sometimes stabilized by nonnative long-range interactions. The relaxation dispersion approach provides a detailed kinetic and thermodynamic description of the folding process as well as the promise of obtaining an atomic level structural description of intermediate states. We review the concerted application of a variety of recently developed NMR relaxation dispersion experiments to obtain a "high-resolution" picture of the folding pathway of the A39V/N53P/V55L Fyn SH3 domain.
机译:蛋白质折叠成其天然构象的机制的表征不仅对于蛋白质结构的预测和设计很重要,而且因为蛋白质错误折叠的中间体可能在原纤维形成中起关键作用,这在神经退行性疾病中很常见。在实践中,折叠路径的研究由于以下事实而变得复杂:大多数情况下,中间体的人口少且寿命短,因此很难进行生物物理研究。由于最新的方法学进展,驰豫弥散NMR光谱法已成为一种特别强大的工具,可以在毫秒级的时间尺度上获得有关蛋白质折叠事件的高分辨率结构信息。该方法在研究SH3结构域折叠中的应用表明,折叠是通过先前未检测到的途中中间体进行的,有时会被非天然的远程相互作用所稳定。弛豫分散法提供了折叠过程的详细动力学和热力学描述,并有望获得中间状态的原子级结构描述。我们审查了各种最近开发的NMR弛豫分散实验的协同应用,以获得A39V / N53P / V55L Fyn SH3域折叠途径的“高分辨率”图片。

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