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首页> 外文期刊>Journal of the American Chemical Society >PREPARATION OF SPECIFICALLY DEUTERATED RNA FOR NMR STUDIES USING A COMBINATION OF CHEMICAL AND ENZYMATIC SYNTHESIS
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PREPARATION OF SPECIFICALLY DEUTERATED RNA FOR NMR STUDIES USING A COMBINATION OF CHEMICAL AND ENZYMATIC SYNTHESIS

机译:化学和酶法合成的方法制备用于NMR研究的特异脱氢核糖核酸

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摘要

The syntheses of ATP, GTP, UTP, and CTP with deuterium labels on the 3', 4', and 5' carbons (2-5) is described. A combination of chemical and enzymatic synthesis is used where D,L-ribose-3,4,5,5'-d(4) (+/-1) is first produced from glycerol-d(8) by chemical methods, and then the four 3',4',5',5'-labeled NTPs (2-5) are prepared from (-1) using enzymes from the purine salvage and pyrimidine biosynthetic metabolic pathways. New procedures were developed for the large scale preparation of GTP and CTP, and existing procedures were modified for the preparation of ATP and UTP. A 30-nucleotide RNA derived from the HIV-2 TAR RNA was prepared with unlabeled NTPs and deuterated NTPs (2-5) to illustrate the dramatic effects of deuteration on the NMR spectra of RNA. The NOESY spectra of the deuterated RNA exhibits greatly reduced spectral crowding compared to that of the unlabeled RNA, and assignment of NOEs to the H2' protons is simplified due to the specific deuteration pattern. Also, the nonselective T-1 and T-2 relaxation rates were measured for the deuterated RNA and found to be approximately twice as long as the T-1 and T-2 relaxation rates of the unlabeled RNA. The spectral simplification and improved relaxation properties of the deuterated RNA should prove useful in the study of large RNAs by NMR.
机译:描述了在3',4'和5'碳原子(2-5)上带有氘标记的ATP,GTP,UTP和CTP的合成。使用化学和酶促合成的组合,其中首先通过化学方法从甘油-d(8)生产D,L-核糖-3,4,5,5'-d(4)(+/- 1),并且然后使用嘌呤挽救和嘧啶生物合成代谢途径的酶从(-1)制备四个3',4',5',5'标记的NTP(2-5)。开发了大规模制备GTP和CTP的新程序,并对现有程序进行了修改以制备ATP和UTP。制备了带有HIV-2 TAR RNA的30个核苷酸的RNA,并带有未标记的NTP和氘化NTP(2-5),以说明氘化对RNA NMR谱的显着影响。与未标记的RNA相比,氘化RNA的NOESY光谱显示出大大减少的光谱拥挤,并且由于特定的氘化模式,简化了NOE与H2'质子的分配。同样,测量了氘化RNA的非选择性T-1和T-2弛豫率,发现其大约是未标记RNA的T-1和T-2弛豫率的两倍。氘化RNA的光谱简化和改善的弛豫特性应该证明对通过NMR研究大型RNA有用。

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