{"title":"Applications of complementarity plot in error detection and structure validation of proteins.","authors":"Sankar Basu, Dhananjay Bhattacharyya, Rahul Banerjee","doi":"","DOIUrl":null,"url":null,"abstract":"<p><p>The complementarity plot (CP) is based on packing and electrostatics of amino acid residues buried within globular proteins and is a sensitive indicator of the harmony or disharmony of interior residues with regard to short and long range forces sustaining the native fold. As a structure validation tool, it has already been reported to be effective in detecting erroneous side-chain torsions in obsoleted structures. The current study describes the design of several local and global scores based on CP and surveys their utilities in discriminating between obsolete structures and their corresponding upgraded counterparts, detection of wrong rotamer assignments and in identifying packing anomalies. CPs are especially effective in the detection of low-intensity errors (in main-chain geometrical parameters) diffused over the entire polypeptide chain. The methodology is also used to confirm the integral role played by strategic deviations (in main-chain geometrical parameters) in maintaining fold integrity, as reversal to their corresponding ideal values (either unimodal or conformation dependent) lead to large-scale structural distortions. A special feature of this validation tool is to signal unbalanced partial charges within protein interiors. The application of CP in protein homology modeling and protein design is also demonstrated.</p>","PeriodicalId":13281,"journal":{"name":"Indian journal of biochemistry & biophysics","volume":"51 3","pages":"188-200"},"PeriodicalIF":1.5000,"publicationDate":"2014-06-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Indian journal of biochemistry & biophysics","FirstCategoryId":"99","ListUrlMain":"","RegionNum":4,"RegionCategory":"生物学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q4","JCRName":"BIOCHEMISTRY & MOLECULAR BIOLOGY","Score":null,"Total":0}
引用次数: 0
Abstract
The complementarity plot (CP) is based on packing and electrostatics of amino acid residues buried within globular proteins and is a sensitive indicator of the harmony or disharmony of interior residues with regard to short and long range forces sustaining the native fold. As a structure validation tool, it has already been reported to be effective in detecting erroneous side-chain torsions in obsoleted structures. The current study describes the design of several local and global scores based on CP and surveys their utilities in discriminating between obsolete structures and their corresponding upgraded counterparts, detection of wrong rotamer assignments and in identifying packing anomalies. CPs are especially effective in the detection of low-intensity errors (in main-chain geometrical parameters) diffused over the entire polypeptide chain. The methodology is also used to confirm the integral role played by strategic deviations (in main-chain geometrical parameters) in maintaining fold integrity, as reversal to their corresponding ideal values (either unimodal or conformation dependent) lead to large-scale structural distortions. A special feature of this validation tool is to signal unbalanced partial charges within protein interiors. The application of CP in protein homology modeling and protein design is also demonstrated.
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.