Vallurupalli Pramodh, Scott Lincoln, Hennig Mirko, Williamson James R, Kay Lewis E
Department of Medical Genetics, University of Toronto, Medical Sciences Building, 1 King's College Circle, Toronto, Ontario M5S1A8, Canada.
J Am Chem Soc. 2006 Jul 26;128(29):9346-7. doi: 10.1021/ja0632512.
A new labeling strategy is presented that greatly facilitates the measurement of 2H spin relaxation rates in RNA molecules as a probe of pico- to nanosecond time scale dynamics. In this labeling scheme the sugar positions are uniformly 13C-labeled, with position 2' protonated and all other sites on the sugar deuterated. Pulse sequences are presented for measurement of 2H R1 and R2 relaxation rates at positions 1', 3', and 4' with sensitivity gains that are on the order of 5-fold relative to previous methods that employed random fractional deuteration. The improved sensitivity is transformative and facilitates the study of motion in moderately sized RNA molecules with good sensitivity. The utility of the approach is demonstrated with an application to HIV-2 TAR, where the site-specific measures of molecular dynamics at sugar positions obtained here complement previous studies of dynamics at aromatic sites in the molecule.
提出了一种新的标记策略,该策略极大地促进了对RNA分子中2H自旋弛豫率的测量,以此作为皮秒到纳秒时间尺度动力学的探针。在这种标记方案中,糖基位置被均匀地13C标记,2'位置质子化,糖基上的所有其他位置氘化。给出了用于测量1'、3'和4'位置的2H R1和R2弛豫率的脉冲序列,其灵敏度相对于采用随机部分氘化的先前方法提高了约5倍。灵敏度的提高具有变革性,有助于以良好的灵敏度研究中等大小RNA分子中的运动。通过应用于HIV-2 TAR证明了该方法的实用性,此处获得的糖基位置分子动力学的位点特异性测量补充了该分子中芳香族位点动力学的先前研究。