首页> 美国卫生研究院文献>Wiley-Blackwell Online Open >SLIM: A Short‐Linked Highly Redox‐Stable Trityl Label for High‐Sensitivity In‐Cell EPR Distance Measurements
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SLIM: A Short‐Linked Highly Redox‐Stable Trityl Label for High‐Sensitivity In‐Cell EPR Distance Measurements

机译:SLIM:一种短链接高氧化还原稳定的三苯甲基标签用于高灵敏度细胞内EPR距离测量

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摘要

The understanding of biomolecular function is coupled to knowledge about the structure and dynamics of these biomolecules, preferably acquired under native conditions. In this regard, pulsed dipolar EPR spectroscopy (PDS) in conjunction with site‐directed spin labeling (SDSL) is an important method in the toolbox of biophysical chemistry. However, the currently available spin labels have diverse deficiencies for in‐cell applications, for example, low radical stability or long bioconjugation linkers. In this work, a synthesis strategy is introduced for the derivatization of trityl radicals with a maleimide‐functionalized methylene group. The resulting trityl spin label, called SLIM, yields narrow distance distributions, enables highly sensitive distance measurements down to concentrations of 90 n , and shows high stability against reduction. Using this label, the guanine‐nucleotide dissociation inhibitor (GDI) domain of outer protein O (YopO) is shown to change its conformation within eukaryotic cells.
机译:对生物分子功能的了解与有关这些生物分子的结构和动力学的知识有关,最好是在自然条件下获得。在这方面,脉冲双极EPR光谱(PDS)与定点自旋标记(SDSL)结合是生物物理化学工具箱中的一种重要方法。但是,目前可用的自旋标记在细胞内应用方面存在多种缺陷,例如,低自由基稳定性或长生物缀合接头。在这项工作中,引入了用马来酰亚胺官能化的亚甲基衍生化三苯甲基自由基的合成策略。所得的三苯甲基自旋标记物称为SLIM,可产生较窄的距离分布,可进行低至90 concentrationsn浓度的高度灵敏的距离测量,并显示出高的还原稳定性。使用该标签,外部蛋白O(YopO)的鸟嘌呤核苷酸解离抑制剂(GDI)域显示出可改变其在真核细胞内的构象。

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