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首页> 外文期刊>Journal of Biomolecular NMR >Measurement of ~1H-~(15)N and ~1H- ~(13)C residual dipolar couplings in nucleic acids from TROSY intensities
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Measurement of ~1H-~(15)N and ~1H- ~(13)C residual dipolar couplings in nucleic acids from TROSY intensities

机译:从TROSY强度测量核酸中〜1H-〜(15)N和〜1H-〜(13)C残留偶极偶联

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摘要

Analogous to the recently introduced ARTSY method for measurement of one-bond ~1H-~(15)N residual dipolar couplings (RDCs) in large perdeuterated proteins, we introduce methods for measurement of base ~(13)C-~1H and ~(15)N-~1H RDCs in protonated nucleic acids. Measurements are based on quantitative analysis of intensities in ~1H-~(15)N and ~(13)C-~1H TROSY-HSQC spectra, and are illustrated for a 71-nucleotide adenine riboswitch. Results compare favorably with those of conventional frequency-based measurements in terms of completeness and convenience of use. The ARTSY method derives the size of the coupling from the ratio of intensities observed in two TROSY-HSQC spectra recorded with different dephasing delays, thereby minimizing potential resonance overlap problems. Precision of the RDC measurements is limited by the signal-to-noise ratio, S/N, achievable in the 2D TROSY-HSQC reference spectrum, and is approximately given by 30/(S/N) Hz for ~(15)N-~1H and 65/(S/N) Hz for ~(13)C-~1H. The signal-to-noise ratio of both ~1H-~(15)N and ~1H-~(13)C spectra greatly benefits when water magnetization during the experiments is not perturbed, such that rapid magnetization transfer from bulk water to the nucleic acid, mediated by rapid amino and hydroxyl hydrogen exchange coupled with ~1H- ~1H NOE transfer, allows for fast repetition of the experiment. RDCs in the mutated helix 1 of the riboswitch are compatible with nucleotide-specifically modeled, idealized A-form geometry and a static orientation relative to the helix 2/3 pair, which differs by ca 6° relative to the X-ray structure of the native riboswitch.
机译:类似于最近引入的ARTSY方法,该方法用于测量大型全氘化蛋白质中单键〜1H-〜(15)N残留偶极偶合(RDC),我们介绍了测量碱基〜(13)C-〜1H和〜( 15)质子化核酸中的N-1HDC。测量是基于对〜1H-〜(15)N和〜(13)C-〜1H TROSY-HSQC光谱中强度的定量分析,并针对71个核苷酸的腺嘌呤核糖开关进行了说明。就完整性和使用便利性而言,结果与传统的基于频率的测量结果相比具有优势。 ARTSY方法从以不同移相延迟记录的两个TROSY-HSQC光谱中观察到的强度比得出耦合的大小,从而最大程度地减少了潜在的共振重叠问题。 RDC测量的精度受到2D TROSY-HSQC参考光谱中可达到的信噪比S / N的限制,对于〜(15)N-大约由30 /(S / N)Hz给出。 〜(13)C-〜1H时为〜1H和65 /(S / N)Hz。当不扰动实验过程中的水磁化强度时,〜1H-〜(15)N和〜1H-〜(13)C光谱的信噪比都会大大受益,从而使快速磁化从大量水转移到核酸通过快速的氨基和羟基氢交换与〜1H-〜1H NOE转移介导的酸,可以快速重复该实验。核糖开关的突变螺旋1中的RDC与核苷酸特异性建模的理想A形几何结构以及相对于螺旋2/3对的静态方向兼容,相对于螺旋2/3对,其静态方向相差约6°。天然核糖开关。

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