Introduction to Structural Bioinformatics
Page: 1-11 (11)
Author: Sheikh Arslan Sehgal, Rana Adnan Tahir, A. Hammad Mirza and Asif Mir
DOI: 10.2174/9781681086033118010005
PDF Price: $15
Abstract
Bioinformatics is an emerging modern biology to solve the biological problems with the help of computational approaches by utilizing mathematical and statistical techniques. There are many databases of protein and gene sequences. The protein sequence can be retrieved from UniProt and 3D structure prediction can be performed by utilizing homology modeling, threading and ab initio. The predicted structures can be evaluated by utilizing numerous model evaluation tools.
Protein Primary Sequence Analysis
Page: 12-16 (5)
Author: Sheikh Arslan Sehgal, Rana Adnan Tahir, A. Hammad Mirza and Asif Mir
DOI: 10.2174/9781681086033118010006
PDF Price: $15
Abstract
The analyses of primary sequence (amino acid sequence) of protein always show logical insights for further studies. We can analyze a wide range of basic information including a prediction of repetitive sequences, the motif, domain, or active sites, and the ability to form a coiled-coiled structure by performing primary sequence analyses. Protparam, the primary sequence analysis tool was utilized to analyze the physicochemical properties of the selected protein.
Secondary Structure Analyses
Page: 17-21 (5)
Author: Sheikh Arslan Sehgal, Rana Adnan Tahir, A. Hammad Mirza and Asif Mir
DOI: 10.2174/9781681086033118010007
PDF Price: $15
Abstract
The analyses of a secondary structure of protein always show logical insights for further studies. α-helices and β-sheets are considered as the major elements of secondary structure which are based on hydrogen bond donor and acceptor residues interactions. The secondary elements may provide information regarding the behavior of the proteins. ProFunc tool utilized to analyze the secondary structure of RASSf2.
3D Structure Prediction
Page: 22-55 (34)
Author: Sheikh Arslan Sehgal, Rana Adnan Tahir, A. Hammad Mirza and Asif Mir
DOI: 10.2174/9781681086033118010008
PDF Price: $15
Abstract
The proteins having similar sequences may have similar structure” is the philosophy of sequences prediction techniques. The 3D structures have structural and functional importance for drug designing. Homology modeling, threading and ab initio approaches are the computational techniques to predict the 3D structure of the proteins for further studies. In this chapter, we will precisely elaborate numerous tools of 3D structure prediction.
Structure Evaluation
Page: 56-78 (23)
Author: Sheikh Arslan Sehgal, Rana Adnan Tahir, A. Hammad Mirza and Asif Mir
DOI: 10.2174/9781681086033118010009
PDF Price: $15
Abstract
The computational prediction of the protein 3D structures involves the mathematical modeling techniques based on statistical terms. That is why the resultant structures may have some structural issues related to β-sheets, α-helices, non-structural loops, amino acid chain angles and backbone psi, phi bond angles that pose potential energy constraints in the structure. The validation of the computationally predicted structure is mandatory that compares different parameters of the protein 3D structure with that of experimentally available protein structures. Here, in this chapter we will discuss the evaluation procedure of the 3D structures for their accuracy and physiochemistry by numerous available tools.
Visualization of Predicted Structure
Page: 79-89 (11)
Author: Sheikh Arslan Sehgal, Rana Adnan Tahir, A. Hammad Mirza and Asif Mir
DOI: 10.2174/9781681086033118010010
PDF Price: $15
Abstract
The structures of proteins generated experimentally or computationally are in a .pdb files and to visualize these structures are the key need of new era. The visualization of the predicted models helps to visualize including loops, α helices, β pleated sheets and turns for the better understanding of the structure. Numerous tools are available for visualizing the structures and also to edit or performing different functions as per the need of experiment. Here, we will focus on the basic visualizing functions by utilizing Chimera.
Molecular Docking Studies
Page: 90-127 (38)
Author: Sheikh Arslan Sehgal, Rana Adnan Tahir, A. Hammad Mirza and Asif Mir
DOI: 10.2174/9781681086033118010011
PDF Price: $15
Abstract
The molecular docking is a significant approach to computer-aided drug design coupled with structural biology. The ligand-protein docking analyses perform to predict the binding domains of a ligand with a protein.
Introduction
Bioinformatics allows researchers to answer biological questions with advanced computational methods which involves the application of statistics and mathematical modeling. Structural bioinformatics enables the prediction and analysis of 3D structures of macromolecules while Computer Aided Drug Designing (CADD) assists scientists to design effective active molecules against diseases. However, the concepts in structural bioinformatics and CADD can be complex to understand for students and educated laymen. This quick guideline is intended as a basic manual for beginner students and instructors involved in bioinformatics and computational chemistry courses. Readers will learn the basics of structural bioinformatics, primary and secondary analysis and prediction, structural visualization, structural analysis and molecular docking. Therefore, the book is a useful handbook for aspiring scholars who wish to learn the basic concepts in computational analysis of biomolecules.