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Solution NMR Experiment for Measurement of 15N-1H Residual Dipolar Couplings in Large Proteins and Supramolecular Complexes

机译:用于大蛋白和超分子复合物中15N-1H残留偶极偶合的溶液NMR实验

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摘要

NMR residual dipolar couplings (RDCs) are exquisite probes of protein structure and dynamics. A new solution NMR experiment named 2D SE2 J-TROSY is presented to measure N-H RDCs for proteins and supramolecular complexes in excess of 200 kDa. This enables validation and refinement of their X-ray crystal and solution NMR structures, and the characterization of structural and dynamic changes occurring upon complex formation. Accurate N-H RDCs were measured at 750 MHz 1H resonance frequency for 11-mer 93 kDa 2H,15N-labeled Trp RNA-binding Attenuator Protein (TRAP) tumbling with a correlation time τc of 120 ns. This is about twice as long as for the most slowly tumbling system, for which N-H RDCs could be measured so far, and corresponds to molecular weights ~200 kDa at 25 °C. Furthermore, due to the robustness of SE2 J-TROSY with respect to residual 1H density from exchangeable protons, increased sensitivity at 1H resonance frequencies around 1 GHz promises to enable N-H RDC measurement for even larger systems.
机译:NMR残留偶极偶合(RDC)是蛋白质结构和动力学的精确探针。提出了一个新的溶液NMR实验,称为2D SE2 J-TROSY,用于测量N-H RDC中超过200 kDa的蛋白质和超分子复合物。这样可以验证和完善其X射线晶体和溶液NMR结构,以及表征在形成复合物时发生的结构和动态变化。在750 MHz 1 H共振频率下测量11-mer 93 kDa 2 H, 15 N标记的Trp RNA结合的准确NH RDC衰减蛋白(TRAP)滚动,相关时间τc为120 ns。这是最慢的翻滚系统的两倍,该系统到目前为止可以测量到该系统的N-H RDC,相当于25°C时的分子量〜200 kDa。此外,由于SE2 J-TROSY对于可交换质子的残留 1 H密度的鲁棒性,在1 GHz附近 1 H共振频率处增加的灵敏度有望实现NH甚至更大系统的RDC测量。

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