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The orientation and dynamics of the C2'-OH and hydration of RNA and DNA.RNA hybrids.

机译:C2'-OH的方向和动力学以及RNA和DNA.RNA杂种的水合作用。

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The stereochemical and dynamic properties of the C2' hydroxyl group in several DNA.RNA hybrids have been measured by NMR and compared with the homologous RNA duplex. The C2'-OH NMR signals of the RNA strands were identified, and numerous specific assignments were made. The rate constants for exchange of the hydroxyl protons with water were determined at 5 degrees C, and were found to depend on both the position within a particular sequence and the nature of the duplex. On average, the exchange rate constants were slowest for the hybrids of composition rR.dY, and fastest for the RNA duplex, with an overall range of approximately 10-50/s. In the DNA.RNA hybrids, strong NOEs and ROEs were observed between the OH and the H1' of the same sugar, unambiguously showing that the OH proton points toward the H1' most of the time, and not toward the O3' of the same sugar. Evidence for significant hydration in both grooves of the DNA.RNA hybrids and the DNA duplex was found in ROESY and NOESY experiments. On average, the minor groove of the DNA.RNA hybrids showed more kinetically significant hydration than the DNA, which can be attributed to the hydrophilic lining of hydroxyl groups in RNA.
机译:通过NMR测定了多个DNA.RNA杂合体中C2'羟基的立体化学和动力学性质,并与同源RNA双链体进行了比较。鉴定了RNA链的C2'-OH NMR信号,并进行了许多具体的分配。在5℃下测定羟基质子与水交换的速率常数,发现其取决于特定序列内的位置和双链体的性质。平均而言,组合物rR.dY的杂种的交换速率常数最慢,而RNA双链体的交换速率常数最快,总范围约为10-50 / s。在DNA.RNA杂种中,在同一糖的OH和H1'之间观察到强的NOE和ROE,明确表明OH质子大部分时间指向H1',而不指向相同的O3'糖。在ROESY和NOESY实验中发现了DNA.RNA杂种和DNA双链体明显水合的证据。平均而言,DNA.RNA杂种的小沟表现出比DNA更具动力学上显着的水合作用,这可归因于RNA中羟基的亲水衬里。

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