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Genome-wide enhancer RNA profiling adds molecular links between genetic variation and human cancers.

Authors :
Cai YM
Lu ZQ
Li B
Huang JY
Zhang M
Chen C
Fan LY
Ma QY
He CY
Chen SN
Jiang Y
Li YM
Ning CB
Zhang FW
Wang WZ
Liu YZ
Zhang H
Jin M
Wang XY
Han JX
Xiong Z
Cai M
Huang CQ
Yang XJ
Zhu X
Zhu Y
Miao XP
Zhang SK
Wei YC
Tian JB
Source :
Military Medical Research [Mil Med Res] 2024 Jun 11; Vol. 11 (1), pp. 36. Date of Electronic Publication: 2024 Jun 11.
Publication Year :
2024

Abstract

Background: Dysregulation of enhancer transcription occurs in multiple cancers. Enhancer RNAs (eRNAs) are transcribed products from enhancers that play critical roles in transcriptional control. Characterizing the genetic basis of eRNA expression may elucidate the molecular mechanisms underlying cancers.<br />Methods: Initially, a comprehensive analysis of eRNA quantitative trait loci (eRNAQTLs) was performed in The Cancer Genome Atlas (TCGA), and functional features were characterized using multi-omics data. To establish the first eRNAQTL profiles for colorectal cancer (CRC) in China, epigenomic data were used to define active enhancers, which were subsequently integrated with transcription and genotyping data from 154 paired CRC samples. Finally, large-scale case-control studies (34,585 cases and 69,544 controls) were conducted along with multipronged experiments to investigate the potential mechanisms by which candidate eRNAQTLs affect CRC risk.<br />Results: A total of 300,112 eRNAQTLs were identified across 30 different cancer types, which exert their influence on eRNA transcription by modulating chromatin status, binding affinity to transcription factors and RNA-binding proteins. These eRNAQTLs were found to be significantly enriched in cancer risk loci, explaining a substantial proportion of cancer heritability. Additionally, tumor-specific eRNAQTLs exhibited high responsiveness to the development of cancer. Moreover, the target genes of these eRNAs were associated with dysregulated signaling pathways and immune cell infiltration in cancer, highlighting their potential as therapeutic targets. Furthermore, multiple ethnic population studies have confirmed that an eRNAQTL rs3094296-T variant decreases the risk of CRC in populations from China (OR = 0.91, 95%CI 0.88-0.95, P = 2.92 × 10 <superscript>-7</superscript> ) and Europe (OR = 0.92, 95%CI 0.88-0.95, P = 4.61 × 10 <superscript>-6</superscript> ). Mechanistically, rs3094296 had an allele-specific effect on the transcription of the eRNA ENSR00000155786, which functioned as a transcriptional activator promoting the expression of its target gene SENP7. These two genes synergistically suppressed tumor cell proliferation. Our curated list of variants, genes, and drugs has been made available in CancereRNAQTL ( http://canernaqtl.whu.edu.cn/#/ ) to serve as an informative resource for advancing this field.<br />Conclusion: Our findings underscore the significance of eRNAQTLs in transcriptional regulation and disease heritability, pinpointing the potential of eRNA-based therapeutic strategies in cancers.<br /> (© 2024. The Author(s).)

Details

Language :
English
ISSN :
2054-9369
Volume :
11
Issue :
1
Database :
MEDLINE
Journal :
Military Medical Research
Publication Type :
Academic Journal
Accession number :
38863031
Full Text :
https://doi.org/10.1186/s40779-024-00539-2