BATMAN-TCM 2.0: an enhanced integrative database for known and predicted interactions between traditional Chinese medicine ingredients and target proteins

Author:

Kong Xiangren1ORCID,Liu Chao1,Zhang Zuzhen2,Cheng Meiqi3ORCID,Mei Zhijun3ORCID,Li Xiangdong3,Liu Peng3,Diao Lihong4,Ma Yajie3,Jiang Peng5,Kong Xiangya5,Nie Shiyan1,Guo Yingzi1,Wang Ze1,Zhang Xinlei5,Wang Yan1,Tang Liujun1,Guo Shuzhen4,Liu Zhongyang123ORCID,Li Dong123ORCID

Affiliation:

1. State Key Laboratory of Proteomics, Beijing Proteome Research Center, National Center for Protein Sciences (Beijing), Beijing Institute of Lifeomics , Beijing  102206 , China

2. School of Basic Medical Sciences, Anhui Medical University , Hefei  230032 , China

3. College of Life Sciences, Hebei University , Baoding  071002 , China

4. School of Traditional Chinese Medicine, Beijing University of Chinese Medicine , Beijing  100029 , China

5. Beijing Geneworks Technology Co., Ltd , Beijing  100101 , China

Abstract

Abstract Traditional Chinese medicine (TCM) is increasingly recognized and utilized worldwide. However, the complex ingredients of TCM and their interactions with the human body make elucidating molecular mechanisms challenging, which greatly hinders the modernization of TCM. In 2016, we developed BATMAN-TCM 1.0, which is an integrated database of TCM ingredient–target protein interaction (TTI) for pharmacology research. Here, to address the growing need for a higher coverage TTI dataset, and using omics data to screen active TCM ingredients or herbs for complex disease treatment, we updated BATMAN-TCM to version 2.0 (http://bionet.ncpsb.org.cn/batman-tcm/). Using the same protocol as version 1.0, we collected 17 068 known TTIs by manual curation (with a 62.3-fold increase), and predicted ∼2.3 million high-confidence TTIs. In addition, we incorporated three new features into the updated version: (i) it enables simultaneous exploration of the target of TCM ingredient for pharmacology research and TCM ingredients binding to target proteins for drug discovery; (ii) it has significantly expanded TTI coverage; and (iii) the website was redesigned for better user experience and higher speed. We believe that BATMAN-TCM 2.0, as a discovery repository, will contribute to the study of TCM molecular mechanisms and the development of new drugs for complex diseases.

Funder

National Natural Science Foundation of China

National key Research and Development Program of China

Publisher

Oxford University Press (OUP)

Subject

Genetics

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