Departamento de Química. Universidad de La Rioja, UA-CSIC, 26006 Logroño, Spain.
Chembiochem. 2011 Jan 3;12(1):110-7. doi: 10.1002/cbic.201000526.
The binding properties of different carbohydrates and glycopeptides containing the β-O-2-deoxy-2-(N-acetyl)-D-glucosaminyl (β-O-GlcNAc) to a synthetically prepared lectin-like receptor have been analyzed. The study combines the use of NMR spectroscopy experiments with extensive MD simulations in explicit water. Notably, the presence of a key hydrogen bond between the receptor and the OMe group of the β-O-GlcNAc-OMe derivative appears to be responsible for the high selectivity observed for this compound. In addition, to study the effect on the binding of the underlying amino acid, we have prepared different model glycopeptides, which include the non-natural α-methylserine and α-methylthreonine as underlying amino acids. Interestingly, the presence of a methyl group decreases the affinity constant, especially in those cases in which a β-methyl group is present. As a result, the serine-containing glycopeptide exhibited the highest affinity constant of the glycopeptides, and the threonine derivative showed the lowest one. This low selectivity could have its origin in the difficulty to form both specific hydrogen bonds and hydrophobic (CH-π) contacts.
已分析不同碳水化合物和糖肽与合成制备的凝集素样受体的结合特性,这些糖肽含有β-O-2-脱氧-2-(N-乙酰基)-D-葡萄糖胺基(β-O-GlcNAc)。该研究结合了 NMR 光谱实验和在明水中的广泛 MD 模拟。值得注意的是,受体与β-O-GlcNAc-OME 衍生物的 OMe 基团之间存在关键氢键,这似乎是导致该化合物高选择性的原因。此外,为了研究基础氨基酸对结合的影响,我们制备了不同的模型糖肽,其中包括非天然的α-甲基丝氨酸和α-甲基苏氨酸作为基础氨基酸。有趣的是,甲基的存在降低了亲和常数,尤其是在存在β-甲基的情况下。因此,含有丝氨酸的糖肽表现出糖肽中最高的亲和常数,而苏氨酸衍生物的亲和常数最低。这种低选择性可能源于难以形成特定氢键和疏水(CH-π)接触。