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首页> 外文期刊>Journal of Biomolecular NMR >Sugar conformation of a stereospecific 2 '-R or 2 '-S deuterium-labeled DNA decamer studied with proton-proton J coupling constants
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Sugar conformation of a stereospecific 2 '-R or 2 '-S deuterium-labeled DNA decamer studied with proton-proton J coupling constants

机译:用质子-质子J耦合常数研究立体特异性2'-R或2'-S氘标记的DNA decamer的糖构象

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The sugar conformation of a DNA decamer was studied with proton-proton (3)J coupling constants. Two samples, one comprising stereospecifically labeled 2'-R-H-2 for all residues and the other 2'-S-H-2, were prepared by the method of Kawashima et al. [J. Org. Chem. (1995) 60, 6980-6986; Nucleosides Nucleotides (1995) 14, 333-336], the deuterium labeling being highly stereospecific greater than or equal to 99% for all 2''-H-2, greater than or equal to 98% for 2'-H-2 of A, C, and T, and greater than or equal to 93% for 2'-H-2 of G). The (3)J values of all H1'-H2' and H1'-H2'' pairs, and several H2'-H3' and H2''-H3' pairs were determined by line fitting of 1D spectra with 0.1-0.2 Hz precision. The observed J coupling constants were explained by the rigid sugar conformation model, and the sugar conformations were found to be between C3'-exo and C2'-endo with Phi (m) values of 26 degrees to 44 degrees, except for the second and 3' terminal residues C2 and C10. For the C2 and C10 residues, the lower fraction of S-type conformation was estimated from J(H1'H2') and J(H1'H2')' values. For C10, the N-S two-site jump model or Gaussian distribution of the torsion angle model could explain the observed J values, and 68% S-type conformation or C1'-exo conformation with 27 degrees distribution was obtained, respectively. The differences between these two motional models are discussed based on a simple simulation of J-coupling constants. [References: 46]
机译:用质子-质子(3)J耦合常数研究了DNA decamer的糖构象。通过Kawashima等人的方法制备了两个样品,一个样品包括对所有残基进行立体定向标记的2'-R-H-2,另一个样品包括2'-S-H-2。 [J.单位化学(1995)60,6980-6986; Nucleosides Nucleotides(1995)14,333-336],氘标记具有高度立体特异性,对于所有2''-H-2大于或等于99%,对于2'-H-2的氘大于或等于98% A,C和T,G的2'-H-2大于或等于93%。所有H1'-H2'和H1'-H2''对以及几对H2'-H3'和H2''-H3'对的(3)J值通过一维光谱的0.1-0.2 Hz线性拟合确定精确。刚性糖构象模型解释了观察到的J耦合常数,发现糖构象在C3'-exo和C2'-endo之间,Phi(m)值在26度到44度之间,第二和第二个除外。 3'末端残基C2和C10。对于C2和C10残基,从J(H1'H2')和J(H1'H2')'值估算出S型构象的较低部分。对于C10,N-S两点跳跃模型或扭转角模型的高斯分布可以解释观测到的J值,并分别获得68%的S型构象或C1'-exo构象,分布为27度。基于J耦合常数的简单仿真,讨论了这两种运动模型之间的差异。 [参考:46]

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