Saranya N, Saravanan K M, Michael Gromiha M, Selvaraj S
a Department of Bioinformatics , School of Life Sciences, Bharathidasan University , Tiruchirappalli 620024 , India.
b Department of Plant Molecular Biology and Bioinformatics , Tamil Nadu Agricultural University , Coimbatore , Tamil Nadu 641003 , India.
J Biomol Struct Dyn. 2016;34(3):508-16. doi: 10.1080/07391102.2015.1050695. Epub 2015 Jun 23.
Conformation switching in protein-protein complexes is considered important for the molecular recognition process. Overall analysis of 123 protein-protein complexes in a benchmark data-set showed that 6.8% of residues switched over their secondary structure conformation upon complex formation. Amino acid residue-wise preference for conformation change has been analyzed in binding and non-binding site residues separately. In this analysis, residues such as Ser, Leu, Glu, and Lys had higher frequency of secondary structural conformation change. The change of helix to coil and sheet to coil conformation and vice versa has been observed frequently, whereas the conformation change of helix to extended sheet occurred rarely in the studied complexes. Influence of conformation change toward the N and C terminal on either side of the binding site residues has been analyzed. Further, analysis on φ and ψ angle variation, conservation, stability, and solvent accessibility have been performed on binding site residues. Knowledge obtained from the present study could be effectively employed in the protein-protein modeling and docking studies.
蛋白质-蛋白质复合物中的构象转换被认为对分子识别过程很重要。对一个基准数据集中123个蛋白质-蛋白质复合物的全面分析表明,6.8%的残基在复合物形成时其二级结构构象发生了转换。已分别对结合位点和非结合位点残基中氨基酸残基对构象变化的偏好进行了分析。在此分析中,Ser、Leu、Glu和Lys等残基的二级结构构象变化频率较高。经常观察到螺旋到卷曲以及片层到卷曲构象的变化,反之亦然,而在研究的复合物中螺旋到伸展片层的构象变化很少发生。已分析了结合位点残基两侧朝向N端和C端的构象变化的影响。此外,还对结合位点残基的φ和ψ角变化、保守性、稳定性和溶剂可及性进行了分析。从本研究中获得的知识可有效地应用于蛋白质-蛋白质建模和对接研究。