首页> 外文期刊>Journal of magnetic resonance >Measurement of N-15 longitudinal relaxation rates in (NH4+)-N-15 spin systems to characterise rotational correlation times and chemical exchange
【24h】

Measurement of N-15 longitudinal relaxation rates in (NH4+)-N-15 spin systems to characterise rotational correlation times and chemical exchange

机译:(NH4 +) - N-15旋转系统中的N-15纵向松弛率测量,以表征旋转相关时间和化学交换

获取原文
获取原文并翻译 | 示例
           

摘要

Many chemical and biological processes rely on the movement of monovalent cations and an understanding of such processes can therefore only be achieved by characterising the dynamics of the involved ions. It has recently been shown that N-15-ammonium can be used as a proxy for potassium to probe potassium binding in bio-molecules such as DNA quadruplexes and enzymes. Moreover, equations have been derived to describe the time-evolution of N-15-based spin density operator elements of (NH4+)-N-15 spin systems. Herein NMR pulse sequences are derived to select specific spin density matrix elements of the (NH4+)-N-15 spin system and to measure their longitudinal relaxation in order to characterise the rotational correlation time of the (NH4+)-N-15 ion as well as report on chemical exchange events of the (NH4+)-N-15 ion. Applications to (NH4+)-N-15 in acidic aqueous solutions are used to cross-validate the developed pulse sequence while measurements of spin-relaxation rates of (NH4+)-N-15 bound to a 41 kDa domain of the bacterial Hsp70 homologue DnaK are presented to show the general applicability of the derived pulse sequence. The rotational correlation time obtained for N-15-ammonium bound to DnaK is similar to the correlation time that describes the rotation about the threefold axis of a methyl group. The methodology presented here provides, together with the previous theoretical framework, an important step towards characterising the motional properties of cations in macromolecular systems. (C) 2017 The Author. Published by Elsevier Inc.
机译:因此,许多化学和生物学过程依赖于单价阳离子的运动和对这些方法的理解,只能通过表征所涉及的离子的动态来实现。最近已经表明,N-15-铵可以用作钾的代理,以探针在生物分子如DNA四边形和酶中探测钾结合。此外,已经得出了方程以描述(NH4 +) - N-15自旋系统的基于N-15的旋绒密度算子元件的时间越演变。在此衍生NMR脉冲序列以选择(NH4 +) - N-15旋转系统的特定旋转密度矩阵元件,并测量它们的纵向松弛,以表征(NH4 +) - N-15离子的旋转相关时间作为(NH4 +) - N-15离子的化学交换事件的报告。酸性水溶液中的(NH4 +) - N-15的应用用于交叉验证发育的脉冲序列,同时测量(NH4 +) - N-15的旋转弛豫率结合到细菌Hsp70同源性DNAK的41kDa结构域提出显示衍生脉冲序列的一般适用性。与DNAK结合的N-15-铵的旋转相关时间类似于描述围绕甲基的三倍轴的旋转的相关时间。这里呈现的方法与先前的理论框架一起提供了表征大分子系统中阳离子的动态特性的重要步骤。 (c)2017年作者。 elsevier公司发布

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号