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TaxKB: a knowledge base for new taxane-related drug discovery
Kasi Murugan1, Sangeetha Shanmugasamy2, Saleh Al-Sohaibani2
1Department of Botany and Microbiology, College of Science, King Saud University, P.O. Box 2455, Riyadh, 11451 Saudi Arabia.
Background:
Taxanes are naturally occurring compounds which belong to a powerful group of chemotherapeutic drugs with anticancer properties. Their current use, clinical efficacy, and unique mechanism of action indicate their potentiality for cancer drug discovery and development thereby promising to reduce the high economy associated with cancer worldwide. Extensive research has been carried out on taxanes with the aim to combat issues of drug resistance, side effects, limited natural supply, and also to increase the therapeutic index of these molecules. These efforts have led to the isolation of many naturally occurring compounds belonging to this family (more than 350 different kinds), and the synthesis of semisynthetic analogs of the naturally existing molecules (>500), and has also led to the characterization of many (>1000) of them. A web-based database system on clinically exploitable taxanes, providing a link between the structure and the pharmacological property of these molecules could help to reduce the druggability gap for these molecules.
Results:
Taxane knowledge base (TaxKB, http://bioinfo.au-kbc.org.in/taxane/Taxkb/), is an online multi-tier relational database that currently holds data on 42 parameters of 250 natural and 503 semisynthetic analogs of taxanes. This database provides researchers with much-needed information necessary for drug development. TaxKB enables the user to search data on the structure, drug-likeness, and physicochemical properties of both natural and synthetic taxanes with a "General Search" option in addition to a "Parameter Specific Search." It displays 2D structure and allows the user to download the 3D structure (a PDB file) of taxanes that can be viewed with any molecular visualization tool. The ultimate aim of TaxKB is to provide information on Absorption, Distribution, Metabolism, and Excretion/Toxicity (ADME/T) as well as data on bioavailability and target interaction properties of candidate anticancer taxanes, ahead of expensive clinical trials.
Conclusion:
This first web-based single-information portal will play a central role and help researchers to move forward in taxane-based cancer drug research.
Insights
A new online database, TaxKB, provides comprehensive information on natural and synthetic taxanes. This resource aids researchers in cancer drug discovery by linking molecular structures with pharmacological properties, accelerating development.
Area of Science:
- Medicinal Chemistry
- Pharmacology
- Bioinformatics
Background:
- Taxanes are potent chemotherapeutic agents with anticancer properties, crucial for cancer drug discovery.
- Extensive research addresses taxane limitations like drug resistance, side effects, and supply issues.
- A centralized database linking taxane structure and properties can bridge the druggability gap.
Purpose of the Study:
- To develop a web-based database system for clinically relevant taxanes.
- To consolidate information on natural and synthetic taxane analogs.
- To facilitate cancer drug discovery and development by providing structural and pharmacological data.
Main Methods:
- Developed Taxane Knowledge Base (TaxKB), an online multi-tier relational database.
- Collected data on 42 parameters for 250 natural and 503 semisynthetic taxane analogs.
- Implemented 'General Search' and 'Parameter Specific Search' functionalities.
Main Results:
- TaxKB provides data on taxane structure, drug-likeness, and physicochemical properties.
- The database displays 2D structures and allows 3D structure downloads (PDB files).
- Future aims include incorporating ADME/T, bioavailability, and target interaction data.
Conclusions:
- TaxKB is the first web-based portal for comprehensive taxane information.
- This resource will significantly aid researchers in advancing taxane-based cancer drug research.
- The database supports the development of novel anticancer agents.
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