Conformational behavior of phenylglycines and hydroxyphenylglycines and non-planarity of phenyl rings.

IF 1.5 4区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY Indian journal of biochemistry & biophysics Pub Date : 2014-10-01
Fateh S Nandel, Mohd Shafique
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引用次数: 0

Abstract

The non-proteinogenic amino acids--phenylglycine (PG) and hydroxyphenylglycine (HPG) are crucial components of certain peptidic natural products and are important for the preparation of various medicines. In this, study, the conformation of model dipeptides Ac-X-NHMe of PG, p-HPG and 3, 5-di-hydroxyphenylglycine (3, 5-DHPG) was studied both in R and S form by quantum mechanical (QM) and molecular dynamics approaches. On the energy scale, the conformational states of these molecules in both the R and S were found to be degenerate by QM studies, stabilized by non-covalent interactions like carbonyl--carbonyl interactions, carbonyl-lp .. π (aromatic ring) interactions etc. These interactions disappeared/weakened due to interaction of water molecules with carbonyl groups of backbone in simulation and water was found to interact with the aromatic ring through O(w)-H .. π or O(w)lp .. π interactions. The degeneracy of conformational states was lifted in favor of R-form of PG and DHPG and water molecules interactions with aromatic ring led to non-planarity of the aromatic ring. In simulation studies, irrespective of the starting geometry, the Φ, ψ values for the R form correspond to inverse β/inverse collagen region and for the S-form, the Φ, ψ values correspond to β/collagen region i.e., adopt single conformation. The obtained results were in conformity with the CD spectroscopic data on D-PG and D-p-HPG. The conformational behavior of the unusual amino acids might be of great help in designing of bioactive peptides/peptide based drugs to be realized in single conformation--an essential requirement.

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苯基甘氨酸和羟基苯基甘氨酸的构象行为和苯基环的非平面性。
苯基甘氨酸(PG)和羟基苯基甘氨酸(HPG)这两种非蛋白质原性氨基酸是某些肽类天然产物的重要组成部分,在制备各种药物中起着重要作用。本研究采用量子力学(QM)和分子动力学方法研究了PG、p-HPG和3,5 -二羟基苯基甘氨酸(3,5 - dhpg)模型二肽Ac-X-NHMe在R和S形态下的构象。在能量尺度上,QM研究发现这些分子在R和S中的构象状态都是简并的,通过非共价相互作用(如羰基-羰基相互作用,羰基-lp相互作用)来稳定。π(芳香环)相互作用等。在模拟中,由于水分子与主链羰基的相互作用,这些相互作用消失/减弱,并且发现水分子通过O(w)-H与芳环相互作用。π或O(w)lp…π相互作用。PG和DHPG的构象态简并性被解除,而水分子与芳烃环的相互作用导致芳烃环的非平面性。在模拟研究中,无论起始几何形状如何,R形式的Φ ψ值对应于逆β/逆胶原区,s形式的Φ ψ值对应于β/逆胶原区,即采用单一构象。所得结果与D-PG和D-p-HPG的CD光谱数据一致。这些不寻常氨基酸的构象行为可能有助于设计生物活性肽/肽基药物,以实现单一构象-这是一种基本要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Indian journal of biochemistry & biophysics
Indian journal of biochemistry & biophysics 生物-生化与分子生物学
CiteScore
2.90
自引率
50.00%
发文量
88
审稿时长
3 months
期刊介绍: Started in 1964, this journal publishes original research articles in the following areas: structure-function relationships of biomolecules; biomolecular recognition, protein-protein and protein-DNA interactions; gene-cloning, genetic engineering, genome analysis, gene targeting, gene expression, vectors, gene therapy; drug targeting, drug design; molecular basis of genetic diseases; conformational studies, computer simulation, novel DNA structures and their biological implications, protein folding; enzymes structure, catalytic mechanisms, regulation; membrane biochemistry, transport, ion channels, signal transduction, cell-cell communication, glycobiology; receptors, antigen-antibody binding, neurochemistry, ageing, apoptosis, cell cycle control; hormones, growth factors; oncogenes, host-virus interactions, viral assembly and structure; intermediary metabolism, molecular basis of disease processes, vitamins, coenzymes, carrier proteins, toxicology; plant and microbial biochemistry; surface forces, micelles and microemulsions, colloids, electrical phenomena, etc. in biological systems. Solicited peer reviewed articles on contemporary Themes and Methods in Biochemistry and Biophysics form an important feature of IJBB. Review articles on a current topic in the above fields are also considered. They must dwell more on research work done during the last couple of years in the field and authors should integrate their own work with that of others with acumen and authenticity, mere compilation of references by a third party is discouraged. While IJBB strongly promotes innovative novel research works for publication as full length papers, it also considers research data emanating from limited objectives, and extension of ongoing experimental works as ‘Notes’. IJBB follows “Double Blind Review process” where author names, affiliations and other correspondence details are removed to ensure fare evaluation. At the same time, reviewer names are not disclosed to authors.
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