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首页> 外文期刊>Angewandte Chemie >A Bioresistant Nitroxide Spin Label for In-Cell EPR Spectroscopy: In Vitro and In Oocytes Protein Structural Dynamics Studies
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A Bioresistant Nitroxide Spin Label for In-Cell EPR Spectroscopy: In Vitro and In Oocytes Protein Structural Dynamics Studies

机译:用于细胞内EPR光谱的生物杀虫剂旋转标签:体外和卵母细胞蛋白质结构动力学研究

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摘要

Approaching protein structural dynamics and protein-protein interactions in the cellular environment is a fundamental challenge. Owing to its absolute sensitivity and to its selectivity to paramagnetic species, site-directed spin labeling (SDSL) combined with electron paramagnetic resonance (EPR) has the potential to evolve into an efficient method to follow conformational changes in proteins directly inside cells. Until now, the use of nitroxide-based spin labels for in-cell studies has represented a major hurdle because of their short persistence in the cellular context. The design and synthesis of the first maleimido-proxyl-based spin label (M-TETPO) resistant towards reduction and being efficient to probe protein dynamics by continuous wave and pulsed EPR is presented. In particular, the extended lifetime of M-TETPO enabled the study of structural features of a chaperone in the absence and presence of its binding partner at endogenous concentration directly inside cells.
机译:接近细胞环境中的蛋白质结构动力学和蛋白质 - 蛋白质相互作用是一个根本的挑战。 由于其绝对灵敏度和对顺磁性物种的选择性,与电子顺磁共振(EPR)结合的位点定向的旋转标记(SDSL)具有发展成为一种有效的方法,以便在细胞内直接遵循蛋白质的构象变化。 到目前为止,由于它们在细胞背景下的短暂持久性,因此使用基于硝基克服的旋转标签已经代表了主要的障碍。 提出了一种抗连续波和脉冲EPR耐抑制和有效抗蛋白动力学和探针蛋白质动态的第一种马来酰亚胺基旋转标签(M-TETPO)的设计和合成。 特别地,M-TETPO的延长寿命使伴侣酮的结构特征能够直接在细胞内部的内源浓度的情况下的伴随和存在。

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