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迈向阐明鼠李半乳糖醛酸聚糖II中的结构-光谱关系:用于精确计算芹糖及其硼酸酯的碳和氢化学位移的计算方法。

Towards Elucidating Structure-Spectra Relationships in Rhamnogalacturonan II: Computational Protocols for Accurate C and H Shifts for Apiose and Its Borate Esters.

作者信息

Bharadwaj Vivek S, Westawker Luke P, Crowley Michael F

机构信息

Renewable Resources and Enabling Sciences Center, National Renewable Energy Laboratory, Golden, CO, United States.

出版信息

Front Mol Biosci. 2022 Jan 24;8:756219. doi: 10.3389/fmolb.2021.756219. eCollection 2021.

Abstract

Apiose is a naturally occurring, uncommon branched-chain pentose found in plant cell walls as part of the complex polysaccharide Rhamnogalacturonan II (RG-II). The structural elucidation of the three-dimensional structure of RG-II by nuclear magnetic resonance (NMR) spectroscopy is significantly complicated by the ability of apiose to cross-link borate ester linkages to form RG-II dimers. Here, we developed a computational approach to gain insight into the structure-spectra relationships of apio-borate complexes in an effort to complement experimental assignments of NMR signals in RG-II. Our protocol involved structure optimizations using density functional theory (DFT) followed by isotropic magnetic shielding constant calculations using the gauge-invariant atomic orbital (GIAO) approach to predict chemical shifts. We evaluated the accuracy of 23 different functional-basis set (FBS) combinations with and without implicit solvation for predicting the experimental H and C shifts of a methyl apioside and its three borate derivatives. The computed NMR predictions were evaluated on the basis of the overall shift accuracy, relative shift ordering, and the ability to distinguish between dimers and monomers. We demonstrate that the consideration of implicit solvation during geometry optimizations in addition to the magnetic shielding constant calculations greatly increases the accuracy of NMR chemical shift predictions and can correctly reproduce the ordering of the C shifts and yield predictions that are, on average, within 1.50 ppm for C and 0.12 ppm for H shifts for apio-borate compounds.

摘要

芹糖是一种天然存在的、不常见的支链戊糖,作为复杂多糖鼠李半乳糖醛酸聚糖II(RG-II)的一部分存在于植物细胞壁中。通过核磁共振(NMR)光谱对RG-II三维结构的结构解析因芹糖交联硼酸酯键形成RG-II二聚体的能力而显著复杂化。在此,我们开发了一种计算方法,以深入了解芹糖-硼酸配合物的结构-光谱关系,努力补充RG-II中NMR信号的实验归属。我们的方案包括使用密度泛函理论(DFT)进行结构优化,然后使用规范不变原子轨道(GIAO)方法计算各向同性磁屏蔽常数以预测化学位移。我们评估了23种不同的泛函-基组(FBS)组合在有无隐式溶剂化情况下预测甲基芹糖苷及其三种硼酸衍生物的实验H和C位移的准确性。基于整体位移准确性、相对位移顺序以及区分二聚体和单体的能力对计算得到的NMR预测进行评估。我们证明,在几何优化过程中除了磁屏蔽常数计算外考虑隐式溶剂化大大提高了NMR化学位移预测的准确性,并且可以正确重现C位移的顺序,对于芹糖-硼酸化合物,C位移预测平均在1.50 ppm以内,H位移预测平均在0.12 ppm以内。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc71/8820409/dfe9e1adacd5/fmolb-08-756219-g001.jpg

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