Database Commons
Database Commons

a catalog of worldwide biological databases

Database Profile

Cancer-mbQTL

General information

URL: http://canmbqtl.whu.edu.cn
Full name: Pan-Cancer Analysis of Microbiome Quantitative Trait Loci
Description: This study systematically identified 38,660 mbQTLs across cancers, ranging 50 in endometrial carcinoma to 3,133 in thyroid carcinoma. Furthermore, a strong enrichment of mbQTLs was observed among transcription factor binding sites and chromatin regulatory elements, such as H3K27ac. Notably, mbQTLs were significantly enriched in cancer genome-wide association studies (GWAS) loci and explained an average of 2% for cancer heritability, indicating that mbQTLs could provide additional insights into cancer etiology. Correspondingly, 24,443 mbQTLs overlapping with GWAS linkage disequilibrium regions were identified. Survival analyses identified 318 mbQTLs associated with patient overall survival.
Year founded: 2022
Last update: 2022-10-04
Version:
Accessibility:
Accessible
Country/Region: China

Classification & Tag

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

Contact information

University/Institution: Wuhan University
Address: Department of Epidemiology and Biostatistics, School of Public Health, TaiKang Center for Life and Medical Sciences, Wuhan University, Wuhan, China.
City:
Province/State:
Country/Region: China
Contact name (PI/Team): Jianbo Tian
Contact email (PI/Helpdesk): tianjb@whu.edu.cn

Publications

35972351
Pan-Cancer Analysis of Microbiome Quantitative Trait Loci. [PMID: 35972351]
Can Chen, Yimin Cai, Yizhuo Liu, Shuoni Chen, Yanmin Li, Fuwei Zhang, Ming Zhang, Zequn Lu, Pingting Ying, Jinyu Huang, Linyun Fan, Xiaomin Cai, Caibo Ning, Wenzhuo Wang, Yuan Jiang, Heng Zhang, Shuhui Yang, Zhihua Wang, Xiaoyang Wang, Shaokai Zhang, Chaoqun Huang, Bin Xu, Zhenming Fu, Qibin Song, Mingjuan Jin, Kun Chen, Hongda Chen, Min Dai, Xiaoping Miao, Xiaojun Yang, Ying Zhu, Jianbo Tian

Microorganisms are commonly detected in tumor tissues, and the species and abundance have been reported to affect cancer initiation, progression, and therapy. Host genetics have been associated with gut microbial abundances, while the relationships between genetic variants and the cancer microbiome still require systematic interrogation. Therefore, identification of cancer microbiome quantitative trait loci (mbQTL) across cancer types might elucidate the contributions of genetic variants to tumor development. Using genotype data from The Cancer Genome Atlas and microbial abundance levels from Kraken-derived data, we developed a computational pipeline to identify mbQTLs in 32 cancer types. This study systematically identified 38,660 mbQTLs across cancers, ranging 50 in endometrial carcinoma to 3,133 in thyroid carcinoma. Furthermore, a strong enrichment of mbQTLs was observed among transcription factor binding sites and chromatin regulatory elements, such as H3K27ac. Notably, mbQTLs were significantly enriched in cancer genome-wide association studies (GWAS) loci and explained an average of 2% for cancer heritability, indicating that mbQTLs could provide additional insights into cancer etiology. Correspondingly, 24,443 mbQTLs overlapping with GWAS linkage disequilibrium regions were identified. Survival analyses identified 318 mbQTLs associated with patient overall survival. Moreover, we uncovered 135,248 microbiome-immune infiltration associations and 166,603 microbiome-drug response associations that might provide clues for microbiome-based biomarkers. Finally, a user-friendly database, Cancer-mbQTL (http://canmbqtl.whu.edu.cn/#/), was constructed for users to browse, search, and download data of interest. This study provides a valuable resource for investigating the roles of genetics and microorganisms in human cancer.
SIGNIFICANCE: This study provides insights into the host-microbiome interactions for multiple cancer types, which could help the research community understand the effects of inherited variants in tumorigenesis and development.

Cancer Res. 2022:82(19) | 12 Citations (from Europe PMC, 2025-12-13)

Ranking

All databases:
3118/6895 (54.793%)
Genotype phenotype and variation:
455/1005 (54.826%)
3118
Total Rank
10
Citations
3.333
z-index

Community reviews

Not Rated
Data quality & quantity:
Content organization & presentation
System accessibility & reliability:

Word cloud

Related Databases

Citing
Cited by

Record metadata

Created on: 2023-08-23
Curated by:
Xinyu Zhou [2023-09-13]
Yue Qi [2023-09-06]
Yuanyuan Cheng [2023-08-23]