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MID

General information

URL: http://mouse.biomedtzc.cn
Full name: Mouse Interactome Database
Description: The predicted Mouse Interactome Database (MID) is prepared through the integration of six types of evidence for functional gene associations from 9 public databases. It includes 155,887 gene associations, including predicted 144,477 functional associations and 11,410 experimentally reported interactions.
Year founded: 2022
Last update: 2022-04-07
Version: v1.0
Accessibility:
Accessible
Country/Region: China

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Contact information

University/Institution: Taizhou University
Address: Institute of Big Data and Artificial Intelligence in Medicine, School of Electronics & Information Engineering, Taizhou University, Taizhou, China.
City: Taizhou
Province/State: Zhejiang
Country/Region: China
Contact name (PI/Team): Xin Chen
Contact email (PI/Helpdesk): xinchen@zju.edu.cn

Publications

35390003
Predicted mouse interactome and network-based interpretation of differentially expressed genes. [PMID: 35390003]
Hai-Bo Zhang, Xiao-Bao Ding, Jie Jin, Wen-Ping Guo, Qiao-Lei Yang, Peng-Cheng Chen, Heng Yao, Li Ruan, Yu-Tian Tao, Xin Chen

The house mouse or Mus musculus has become a premier mammalian model for genetic research due to its genetic and physiological similarities to humans. It brought mechanistic insights into numerous human diseases and has been routinely used to assess drug efficiency and toxicity, as well as to predict patient responses. To facilitate molecular mechanism studies in mouse, we present the Mouse Interactome Database (MID, Version 1), which includes 155,887 putative functional associations between mouse protein-coding genes inferred from functional association evidence integrated from 9 public databases. These putative functional associations are expected to cover 19.32% of all mouse protein interactions, and 26.02% of these function associations may represent protein interactions. On top of MID, we developed a gene set linkage analysis (GSLA) web tool to annotate potential functional impacts from observed differentially expressed genes. Two case studies show that the MID/GSLA system provided precise and informative annotations that other widely used gene set annotation tools, such as PANTHER and DAVID, did not. Both MID and GSLA are accessible through the website http://mouse.biomedtzc.cn.

PLoS One. 2022:17(4) | 0 Citations (from Europe PMC, 2025-12-13)

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Record metadata

Created on: 2023-09-07
Curated by:
Shiting Wang [2024-08-28]
Shiting Wang [2024-08-27]
Xinyu Zhou [2023-10-16]
Jane Young [2023-09-07]