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通过剩余偶极耦合常数测定溶液中的糖结构:方法及对β-D-甲基吡喃木糖苷的应用

Determination of sugar structures in solution from residual dipolar coupling constants: methodology and application to methyl beta-D-xylopyranoside.

作者信息

Pham Tran N, Hinchley Sarah L, Rankin David W H, Liptaj Tibor, Uhrín Dusan

机构信息

Contribution from the School of Chemistry, University of Edinburgh, West Mains Road, Edinburgh EH9 3JJ, Scotland, U.K.

出版信息

J Am Chem Soc. 2004 Oct 13;126(40):13100-10. doi: 10.1021/ja047242+.

Abstract

We have developed methodology for the determination of solution structures of small molecules from residual dipolar coupling constants measured in dilute liquid crystals. The power of the new technique is demonstrated by the determination of the structure of methyl beta-d-xylopyranoside (I) in solution. An oriented sample of I was prepared using a mixture of C(12)E(5) and hexanol in D(2)O. Thirty residual dipolar coupling constants, ranging from -6.44 to 4.99 Hz, were measured using intensity-based J-modulated NMR techniques. These include 15 D(HH), 4 (1)D(CH), and 11 (n)D(CH) coupling constants. The accuracy of the dipolar coupling constants is estimated to be < +/- 0.02 Hz. New constant-time HMBC NMR experiments were developed for the measurement of (n)D(CH) coupling constants, the use of which was crucial for the successful structure determination of I, as they allowed us to increase the number of fitted parameters. The structure of I was refined using a model in which the directly bonded interatom distances were fixed at their ab initio values, while 16 geometrical and 5 order parameters were optimized. These included 2 CCC and 6 CCH angles, and 2 CCCC and 6 CCCH dihedral angles. Vibrationally averaged dipolar coupling constants were used during the refinement. The refined solution structure of I is very similar to that obtained by ab initio calculations, with 11 bond and dihedral angles differing by 0.8 degrees or less and the remaining 5 parameters differing by up to 3.3 degrees . Comparison with the neutron diffraction structure showed larger differences attributable to crystal packing effects. Reducing the degree of order by using dilute liquid crystalline media in combination with precise measurement of small residual dipolar coupling constants, as shown here, is a way of overcoming the limitation of strongly orienting liquid crystals associated with the complexity of (1)H NMR spectra for molecules with more than 12 protons.

摘要

我们已经开发出一种方法,可根据在稀液晶中测得的残余偶极耦合常数来确定小分子的溶液结构。通过测定溶液中β-D-吡喃木糖苷(I)的结构,证明了这项新技术的强大功能。使用C(12)E(5)和己醇在D(2)O中的混合物制备了I的取向样品。使用基于强度的J调制核磁共振技术测量了30个残余偶极耦合常数,范围从-6.44至4.99 Hz。这些包括15个D(HH)、4个(1)D(CH)和11个(n)D(CH)耦合常数。偶极耦合常数的准确度估计为<±0.02 Hz。开发了新的恒时HMBC核磁共振实验来测量(n)D(CH)耦合常数,其使用对于I的成功结构测定至关重要,因为它们使我们能够增加拟合参数的数量。使用一个模型对I的结构进行了优化,在该模型中,直接键合的原子间距离固定为其从头算值,同时对16个几何参数和5个序参数进行了优化。这些参数包括2个CCC和6个CCH角,以及2个CCCC和6个CCCH二面角。在优化过程中使用了振动平均偶极耦合常数。I的优化溶液结构与从头算计算得到的结构非常相似,11个键角和二面角相差0.8度或更小,其余5个参数相差最大为3.3度。与中子衍射结构的比较表明,由于晶体堆积效应,差异更大。如本文所示,通过使用稀液晶介质并结合精确测量小的残余偶极耦合常数来降低有序度,是克服与具有超过12个质子的分子的(1)H核磁共振谱复杂性相关的强取向液晶局限性 的一种方法。

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