Keys Allison M, Kastner David W, Kiessling Laura L, Kulik Heather J
Computational and Systems Biology Program, Massachusetts Institute of Technology Cambridge MA 02139 USA.
Department of Chemical Engineering, MIT Cambridge MA 02139 USA
Chem Sci. 2024 Dec 3;16(4):1746-1761. doi: 10.1039/d4sc06246a. eCollection 2025 Jan 22.
CH-π interactions between carbohydrates and aromatic amino acids play an essential role in biological systems that span all domains of life. Quantifying the strength and importance of these CH-π interactions is challenging because these interactions involve several atoms and can exist in many distinct orientations. To identify an orientational landscape of CH-π interactions, we constructed a dataset of close contacts formed between β-d-galactose residues and the aromatic amino acids, tryptophan, tyrosine, and phenylalanine, across crystallographic structures deposited in the Protein Data Bank. We carried out quantum mechanical calculations to quantify their interaction strengths. The data indicate that tryptophan-containing CH-π interactions have more favorable interaction energies than those formed by tyrosine or phenylalanine. The energetic differences between these amino acids are caused by the aromatic ring system electronics and size. We use individual distance and angle features to train random forest models to successfully predict the first-principles computed energetics of CH-π interactions. Using insights from our models, we define a tradeoff in CH-π interaction strength arising from the proximity of galactose carbons 1 and 2 carbons 4 and 6 to the aromatic amino acid. Our work demonstrates that a feature of CH-π stacking interactions is that numerous orientations allow for highly favorable interaction strengths.
碳水化合物与芳香族氨基酸之间的CH-π相互作用在涵盖生命所有领域的生物系统中起着至关重要的作用。量化这些CH-π相互作用的强度和重要性具有挑战性,因为这些相互作用涉及多个原子,并且可以以许多不同的取向存在。为了确定CH-π相互作用的取向格局,我们构建了一个数据集,该数据集包含在蛋白质数据库中沉积的晶体结构中β-d-半乳糖残基与芳香族氨基酸色氨酸、酪氨酸和苯丙氨酸之间形成的紧密接触。我们进行了量子力学计算以量化它们的相互作用强度。数据表明,含色氨酸的CH-π相互作用比酪氨酸或苯丙氨酸形成的相互作用具有更有利的相互作用能。这些氨基酸之间的能量差异是由芳香环系统的电子学和大小引起的。我们使用单个距离和角度特征来训练随机森林模型,以成功预测CH-π相互作用的第一性原理计算的能量学。利用我们模型的见解,我们定义了由于半乳糖碳1和2、碳4和6与芳香族氨基酸的接近而产生的CH-π相互作用强度的权衡。我们的工作表明,CH-π堆积相互作用的一个特征是许多取向允许高度有利的相互作用强度。