Saravanan Konda Mani, Selvaraj Samuel
Centre of Advanced Study in Crystallography & Biophysics, University of Madras, Guindy Campus, Chennai, Tamil Nadu, 600 025, India.
Department of Bioinformatics, School of Life Sciences, Bharathidasan University, Tiruchirappalli, Tamil Nadu, 620024, India.
J Biol Phys. 2017 Jun;43(2):265-278. doi: 10.1007/s10867-017-9451-x. Epub 2017 Jun 2.
In theory, a polypeptide chain can adopt a vast number of conformations, each corresponding to a set of backbone rotation angles. Many of these conformations are excluded due to steric overlaps. Ramachandran and coworkers were the first to look into this problem by plotting backbone dihedral angles in a two-dimensional plot. The conformational space in the Ramachandran map is further refined by considering the energetic contributions of various non-bonded interactions. Alternatively, the conformation adopted by a polypeptide chain may also be examined by investigating interactions between the residues. Since the Ramachandran map essentially focuses on local interactions (residues closer in sequence), out of interest, we have analyzed the dihedral angle preferences of residues that make non-local interactions (residues far away in sequence and closer in space) in the folded structures of proteins. The non-local interactions have been grouped into different types such as hydrogen bond, van der Waals interactions between hydrophobic groups, ion pairs (salt bridges), and ππ-stacking interactions. The results show the propensity of amino acid residues in proteins forming local and non-local interactions. Our results point to the vital role of different types of non-local interactions and their effect on dihedral angles in forming secondary and tertiary structural elements to adopt their native fold.
理论上,一条多肽链可以采取大量的构象,每种构象对应一组主链旋转角度。由于空间重叠,许多这些构象被排除。拉马钱德兰及其同事率先通过在二维图中绘制主链二面角来研究这个问题。通过考虑各种非键相互作用的能量贡献,拉马钱德兰图中的构象空间得到了进一步细化。或者,也可以通过研究残基之间的相互作用来检查多肽链所采取的构象。由于拉马钱德兰图主要关注局部相互作用(序列上较近的残基),出于兴趣,我们分析了在蛋白质折叠结构中形成非局部相互作用(序列上较远且空间上较近的残基)的残基的二面角偏好。非局部相互作用已被分为不同类型,如氢键、疏水基团之间的范德华相互作用、离子对(盐桥)和π-π堆积相互作用。结果显示了蛋白质中氨基酸残基形成局部和非局部相互作用的倾向。我们的结果指出了不同类型的非局部相互作用的重要作用及其对二面角在形成二级和三级结构元件以采用其天然折叠方面的影响。