Database Commons
Database Commons

a catalog of worldwide biological databases

Database Profile

AMED Cardiotoxicity Database

General information

URL: http://drugdesign.riken.jp/hERGdb
Full name:
Description: a database of small molecules which bind to various ion channels and potentially cause cardiotoxic risk.
Year founded: 2018
Last update: 2018-10-04
Version:
Accessibility:
Accessible
Country/Region: Japan

Classification & Tag

Data type:
Data object:
NA
Database category:
Major species:
NA
Keywords:

Contact information

University/Institution: RIkagaku KENkyusho/Institute of Physical and Chemical Research
Address:
City:
Province/State:
Country/Region: Japan
Contact name (PI/Team): Teruki Honma
Contact email (PI/Helpdesk): honma.teruki@riken.jp

Publications

29979714
Construction of an integrated database for hERG blocking small molecules. [PMID: 29979714]
Sato T, Yuki H, Ogura K, Honma T.

The inhibition of the hERG potassium channel is closely related to the prolonged QT interval, and thus assessing this risk could greatly facilitate the development of therapeutic compounds and the withdrawal of hazardous marketed drugs. The recent increase in SAR information about hERG inhibitors in public databases has led to many successful applications of machine learning techniques to predict hERG inhibition. However, most of these reports constructed their prediction models based on only one SAR database because the differences in the data format and ontology hindered the integration of the databases. In this study, we curated the hERG-related data in ChEMBL, PubChem, GOSTAR, and hERGCentral, and integrated them into the largest database about hERG inhibition by small molecules. Assessment of structural diversity using Murcko frameworks revealed that the integrated database contains more than twice as many chemical scaffolds for hERG inhibitors than any of the individual databases, and covers 18.2% of the Murcko framework-based chemical space occupied by the compounds in ChEMBL. The database provides the most comprehensive information about hERG inhibitors and will be useful to design safer compounds for drug discovery. The database is freely available at http://drugdesign.riken.jp/hERGdb/.

PLoS One. 2018:13(7) | 32 Citations (from Europe PMC, 2025-12-20)

Ranking

All databases:
2734/6895 (60.363%)
Health and medicine:
684/1738 (60.702%)
2734
Total Rank
28
Citations
4
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Record metadata

Created on: 2019-01-03
Curated by:
Dong Zou [2019-01-10]
Dong Zou [2019-01-03]