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Vishwakarma, A. T.

Publications and source records attributed to Vishwakarma, A. T..

2 recordsLinked to original sources

X-Pro: A Web-based tool for structural analysis of point mutations on protein structures.

Understanding how point mutations affect protein structures is critical for understanding their impacts on a proteins function and, eventually their role in causing diseases or biological differences. In recent decades, structural inferences of missense mutations have gained significant attention due to their importance in understanding monogenic disorders. Making point mutations in silico is one of the simple bioinformatics tasks. Existing GUI-based open-source tools like PyMOL, Chimera, Discovery Studio, etc., have simplified this task so that it can be done with a few mouse clicks. However, this continues to be a difficult task for untrained biologists. Further, understanding the loss and gain of interactions caused by such mutations remains even more challenging to them. To address this, we have developed a simple web-browser-based application named X-Pro wherein a PDB structure, chain ID, residue number, and the target mutation are taken as inputs, along with mutation information. The tool runs PyMOL and LigPlot tools in the back-end, taking the site of mutation as the ligand and returning graphical images of the structure before and after in-silico point mutation, and a table listing the loss and gain of interactions arising from this mutation. The tool is available for users at the URL http://bts.ibab.ac.in/X-Pro.php.

bioinformatics↗

AnnoDUF: A Web-Based Tool for Annotating Functions of Proteins having Domains of Unknown Function (DUFs)

The rapid expansion of biological sequence databases due to high-throughput genomic and proteomic sequencing methods has left a considerable number of identified protein sequences with unclear or incomplete functional annotations. DUFs are protein domains that lack functional annotations but are present in numerous proteins. To address the challenge of finding functional annotations for DUFs, we have developed a computational method, which efficiently identifies and annotates these enigmatic protein domains by utilizing PSI-BLAST and data mining techniques. Our pipeline identifies putative potential functionalities of DUFs, thereby decreasing the gap between known sequences and functions. The tool can also take user input sequences to annotate. We executed our pipeline on 4,775 unique DUF sequences obtained from Pfam, resulting in putative annotations for 1,971 of these. These annotations were subsequently incorporated into a comprehensive database and interfaced with a web-based server named AnnoDUF. AnnoDUF is freely accessible to both academic and industrial users, via World Wide Web at the link http://bts.ibab.ac.in/annoduf.php.

bioinformatics↗