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首页> 外文期刊>Journal of Biomolecular NMR >A novel PH-CT-COSY methodology for measuring J(PH) coupling constants in unlabeled nucleic acids. Application to HIV-2 TAR RNA
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A novel PH-CT-COSY methodology for measuring J(PH) coupling constants in unlabeled nucleic acids. Application to HIV-2 TAR RNA

机译:一种用于测量未标记核酸中J(PH)偶联常数的新型PH-CT-COSY方法。在HIV-2 TAR RNA中的应用

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摘要

A quantitative analysis of J(PH) scalar couplings in nucleic acids is difficult due to small couplings to phosphorus, the extreme overlap of the sugar protons and the fast relaxation of the spins involved in the magnetization transfer. Here we present a new methodology that relies on heteronuclear Constant Time Correlation Spectroscopy (CT-COSY). The three vicinal (3)J(PH3'), (3)J(PH5') and (3)J(PH5')' scalar couplings can be obtained by monitoring the intensity decay of the P-i-H3'(i-1) peak as a function of the constant time T in a 2D correlation map. The advantage of the new method resides in the possibility of measuring the two (3)J(PH5') and (3)J(PH5')' scalar couplings even in the presence of overlapped H5'/H5'' resonances, since the quantitative information is extracted from the intensity decay of the P-H3' peak. Moreover, the relaxation of the H3' proton is considerably slower than that of the H5'/H5'' geminal protons and the commonly populated conformations of the phosphate backbone are associated with large (3)J(PH3)' couplings and relatively small (3)J(PH5' / H5''). These two facts lead to optimal signal-to-noise ratio for the P-H3' correlation compared to the P-H5'/H5'' correlation. The heteronuclear CT-COSY experiment is suitable for oligonucleotides in the 10-15 kDa molecular mass range and has been applied to the 30mer HIV-2 TAR RNA. The methodology presented here can be used to measure P-H dipolar couplings (D-PH) as well. We will present qualitative results for the measurement of P-H-base and P-H2' dipolar couplings in the HIV-2 TAR RNA and will discuss the reasons that so far precluded the quantification of the D-PHs for the 30mer RNA. [References: 40]
机译:由于与磷的偶联较小,糖质子的极度重叠以及磁化转移中涉及的自旋的快速弛豫,因此难以对核酸中的J(PH)标量偶联进行定量分析。在这里,我们介绍了一种依赖于异核恒定时间相关光谱法(CT-COSY)的新方法。可以通过监视Pi-H3'(i-1)的强度衰减来获得三个相邻的(3)J(PH3'),(3)J(PH5')和(3)J(PH5')'标量耦合)峰值是2D相关图中恒定时间T的函数。新方法的优点在于即使在H5'/ H5''共振重叠的情况下,也可以测量两个(3)J(PH5')和(3)J(PH5')'标量耦合。从P-H3'峰的强度衰减中提取定量信息。此外,H3'质子的弛豫要比H5'/ H5''双子质子的弛豫慢得多,并且磷酸骨架的常见构象与大(3)J(PH3)'偶联和相对小的( 3)J(PH5'/ H5'')。这两个事实导致与P-H5'/ H5''相关性相比,P-H3'相关性具有最佳的信噪比。异核CT-COSY实验适用于10-15 kDa分子量范围的寡核苷酸,并已应用于30mer HIV-2 TAR RNA。这里介绍的方法也可用于测量P-H偶极耦合(D-PH)。我们将提供用于测量HIV-2 TAR RNA中P-H碱基和P-H2'偶极偶合的定性结果,并将讨论迄今为止无法定量分析30mer RNA D-PH的原因。 [参考:40]

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