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首页> 外文期刊>Journal of magnetic resonance >Measurement of one-bond C-13(alpha)-H-1(alpha) residual dipolar coupling constants in proteins by selective manipulation of (CH alpha)-H-alpha spins
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Measurement of one-bond C-13(alpha)-H-1(alpha) residual dipolar coupling constants in proteins by selective manipulation of (CH alpha)-H-alpha spins

机译:通过选择性操纵(CH alpha)-H-alpha自旋来测量蛋白质中单键C-13α-H-1α残留偶极偶合常数

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We have developed new 2D and 3D experiments for the measurement of C-alpha-H-alpha residual dipolar coupling constants in C-13 and N-15 labelled proteins. Two experiments, 2D (HNCO)-(J-CA)NH and 3D (HN)CO-(J-CA)NH, sample the C-alpha-H-alpha splitting by means of C-alpha magnetization, while 2D (J-HACACO)NH and 3D J-HA(CACO)NH use H-alpha magnetization to achieve a similar result. In the 2D experiments the Coupling evolution is superimposed on the evolution of the N-15 chemical shifts and the IPAP principle is used to obtain H-1-N-15 HSQC-like spectra from which the splitting is determined. The use ora third dimension in 3D experiments reduces spectral overlap to the point where use of all IPAP scheme may not be necessary. The length of the sampling interval in the J-dimension of these experiments is dictated solely by the relaxation properties of C-alpha or H-alpha nuclei. This was made possible by the use of C-alpha selective pulses in combination with either a DPFGSE or modified BIRD pulses. Inclusion of these pulse sequence elements in the J-evolution periods removes unwanted spin-spin interactions. This allows prolonged sampling periods (similar to 25 ms) yielding higher precision C-alpha-H-alpha splitting determination than is achievable with existing frequency based methods. (c) 2006 Elsevier Inc. All rights reserved.
机译:我们已经开发出新的2D和3D实验,用于测量C-13和N-15标记蛋白中C-alpha-H-alpha残留的偶极偶合常数。 2D(HNCO)-(J-CA)NH和3D(HN)CO-(J-CA)NH两个实验通过C-alpha磁化对C-alpha-H-alpha分裂进行采样,而2D(J -HACACO)NH和3D J-HA(CACO)NH使用H-α磁化强度获得相似的结果。在二维实验中,将耦合演化叠加在N-15化学位移的演化上,并使用IPAP原理获得类H-1-N-15 HSQC光谱,从中确定分裂。在3D实验中使用三维三维可将频谱重叠减少到可能不需要使用所有IPAP方案的程度。在这些实验的J维中,采样间隔的长度仅由C-α或H-α原子核的弛豫特性决定。通过将C-alpha选择脉冲与DPFGSE或修改的BIRD脉冲结合使用,可以实现这一点。在J演化周期中包含这些脉冲序列元素可消除不必要的自旋-自旋相互作用。与现有的基于频率的方法相比,这可以延长采样周期(类似于25 ms),从而产生更高的C-alpha-H-alpha拆分确定精度。 (c)2006 Elsevier Inc.保留所有权利。

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