Database Commons
Database Commons

a catalog of worldwide biological databases

Database Profile

ATD

General information

URL: http://auto2disease.nwsuaflmz.com
Full name: Autophagy To Disease
Description: Autophagy To Disease to archive autophagy-associated diseases. This resource provides bioinformatics annotation system about genes and chemicals about autophagy and human diseases by extracting results from previous studies with text mining technology.
Year founded: 2018
Last update:
Version:
Accessibility:
Accessible
Country/Region: China

Contact information

University/Institution: Northwest A&F University
Address:
City: Xianyang
Province/State: Shanxi2
Country/Region: China
Contact name (PI/Team): Mingzhi Liao
Contact email (PI/Helpdesk): liaomingzhi83@163.com

Publications

30239683
ATD: a comprehensive bioinformatics resource for deciphering the association of autophagy and diseases. [PMID: 30239683]
Wenjing Wang, Peng Zhang, Leijie Li, Zhaobin Chen, Weiyang Bai, Guiyou Liu, Liangcai Zhang, Haiyang Jia, Li Li, Yingcui Yu, Mingzhi Liao

Autophagy is the natural, regulated, destructive mechanism of the eukaryotes cell that disassembles unnecessary or dysfunctional components. In recent years, the association between autophagy and diseases has attracted more and more attention, but our understanding of the molecular mechanism about the association in the system perspective is limited and ambiguous. Hence, we developed the comprehensive bioinformatics resource Autophagy To Disease (ATD, http://auto2disease.nwsuaflmz.com) to archive autophagy-associated diseases. This resource provides bioinformatics annotation system about genes and chemicals about autophagy and human diseases by extracting results from previous studies with text mining technology. Based on the big data from ATD, we found that some classes of disease tend to be related with autophagy, including respiratory disease, cancer, urogenital disease and digestive system disease. We also found that some classes of autophagy-related diseases have a strong association among each other and constitute modules. Furthermore, we extracted the autophagy-disease-related genes (ADGs) from ATD and provided a novel algorithm Optimized Random Forest with Label model to predict potential ADGs. This bioinformatics annotation system about autophagy and human diseases may provide a basic resource for the further detection of the molecular mechanisms of autophagy pathway to disease.

Database (Oxford). 2018:2018() | 7 Citations (from Europe PMC, 2025-12-13)

Ranking

All databases:
5201/6895 (24.583%)
Interaction:
951/1194 (20.436%)
Pathway:
328/451 (27.494%)
Health and medicine:
1294/1738 (25.604%)
Standard ontology and nomenclature:
178/238 (25.63%)
Literature:
440/577 (23.917%)
5201
Total Rank
7
Citations
1
z-index

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Record metadata

Created on: 2019-10-27
Curated by:
Shoaib Saleem [2019-11-23]
irfan Hussain [2019-10-27]