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3D 相互作用同源性:苯丙氨酸、酪氨酸和色氨酸残基中“π-阳离子”和“π-π”相互作用基序的疏水性分析。

3D Interaction Homology: Hydropathic Analyses of the "π-Cation" and "π-π" Interaction Motifs in Phenylalanine, Tyrosine, and Tryptophan Residues.

机构信息

Department of Medicinal Chemistry, Virginia Commonwealth University, Richmond, Virginia 23298-0540, United States.

Center for the Study of Biological Complexity, Virginia Commonwealth University, Richmond, Virginia 23284-2030, United States.

出版信息

J Chem Inf Model. 2021 Jun 28;61(6):2937-2956. doi: 10.1021/acs.jcim.1c00235. Epub 2021 Jun 8.

Abstract

Three-dimensional (3D) maps of the hydropathic environments of protein amino acid residues are information-rich descriptors of preferred conformations, interaction types and energetics, and solvent accessibility. The interactions made by each residue are the primary factor for rotamer selection and the secondary, tertiary, and even quaternary protein structure. Our evolving basis set of environmental data for each residue type can be used to understand the protein structure. This work focuses on the aromatic residues phenylalanine, tyrosine, and tryptophan and their structural roles. We calculated and analyzed side chain-to-environment 3D maps for over 70,000 residues of these three types that reveal, with respect to hydrophobic and polar interactions, the environment around each. After binning with backbone ϕ/ψ and side chain χ, we clustered each bin by 3D similarities between map-map pairs. For each of the three residue types, four bins were examined in detail: one in the β-pleat, two in the right-hand α-helix, and one in the left-hand α-helix regions of the Ramachandran plot. For high degrees of side chain burial, encapsulation of the side chain by hydrophobic interactions is ubiquitous. The more solvent-exposed side chains are more likely to be involved in polar interactions with their environments. Evidence for π-π interactions was observed in about half of the residues surveyed [phenylalanine (PHE): 53.3%, tyrosine (TYR): 34.1%, and tryptophan (TRP): 55.7%], but on an energy basis, this contributed to only ∼4% of the total. Evidence for π-cation interactions was observed in 14.1% of PHE, 8.3% of TYR, and 26.8% of TRP residues, but on an energy basis, this contributed to only ∼1%. This recognition of even these subtle interactions in the 3D hydropathic environment maps is key support for our interaction homology paradigm of protein structure elucidation and possibly prediction.

摘要

三维(3D)蛋白质氨基酸残基疏水环境图谱是对优先构象、相互作用类型和能量以及溶剂可及性的信息丰富描述符。每个残基的相互作用是构象选择和二级、三级甚至四级蛋白质结构的主要因素。我们不断发展的环境数据基础集可用于理解蛋白质结构。这项工作专注于芳香族残基苯丙氨酸、酪氨酸和色氨酸及其结构作用。我们计算和分析了这三种类型的超过 70000 个残基的侧链与环境的 3D 图谱,这些图谱揭示了每个残基周围的疏水性和极性相互作用。在与主链 ϕ/ψ 和侧链 χ 进行分箱后,我们通过图谱对之间的 3D 相似性对每个分箱进行聚类。对于这三种残基类型,我们详细检查了四个分箱:一个在β折叠中,两个在右手α螺旋中,一个在左手α螺旋区域的 Ramachandran 图中。对于高度的侧链掩埋,侧链被疏水性相互作用包裹是普遍存在的。更暴露于溶剂的侧链更有可能与其环境发生极性相互作用。在调查的残基中,约有一半观察到[苯丙氨酸(PHE):53.3%,酪氨酸(TYR):34.1%,色氨酸(TRP):55.7%]存在π-π相互作用的证据,但从能量角度来看,这仅占总能量的约 4%。在 PHE 中观察到 14.1%、TYR 中观察到 8.3%、TRP 中观察到 26.8%的残基存在π-阳离子相互作用的证据,但从能量角度来看,这仅占总能量的约 1%。在 3D 疏水环境图谱中甚至识别出这些微妙的相互作用,这是我们蛋白质结构阐明和可能预测的同源相互作用范例的关键支持。

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