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Updated: Mar 29, 2026

Genome-wide Screen for miRNA Targets Using the MISSION Target ID Library
Published on: April 6, 2012
SNP Regulation of microRNA Expression and Subsequent Colon Cancer Risk
Lila E Mullany1, Roger K Wolff1, Jennifer S Herrick1
1University of Utah, School of Medicine, Department of Internal Medicine, Salt Lake City, Utah, United States of America.
Introduction:
MicroRNAs (miRNAs) regulate messenger RNAs (mRNAs) and as such have been implicated in a variety of diseases, including cancer. MiRNAs regulate mRNAs through binding of the miRNA 5' seed sequence (~7-8 nucleotides) to the mRNA 3' UTRs; polymorphisms in these regions have the potential to alter miRNA-mRNA target associations. SNPs in miRNA genes as well as miRNA-target genes have been proposed to influence cancer risk through altered miRNA expression levels.
Methods:
MiRNA-SNPs and miRNA-target gene-SNPs were identified through the literature. We used SNPs from Genome-Wide Association Study (GWAS) data that were matched to individuals with miRNA expression data generated from an Agilent platform for colon tumor and non-tumor paired tissues. These samples were used to evaluate 327 miRNA-SNP pairs for associations between SNPs and miRNA expression levels as well as for SNP associations with colon cancer.
Results:
Twenty-two miRNAs expressed in non-tumor tissue were significantly different by genotype and 21 SNPs were associated with altered tumor/non-tumor differential miRNA expression across genotypes. Two miRNAs were associated with SNP genotype for both non-tumor and tumor/non-tumor differential expression. Of the 41 miRNAs significantly associated with SNPs all but seven were significantly differentially expressed in colon tumor tissue. Two of the 41 SNPs significantly associated with miRNA expression levels were associated with colon cancer risk: rs8176318 (BRCA1), ORAA 1.31 95% CI 1.01, 1.78, and rs8905 (PRKAR1A), ORGG 2.31 95% CI 1.11, 4.77.
Conclusion:
Of the 327 SNPs identified in the literature as being important because of their potential regulation of miRNA expression levels, 12.5% had statistically significantly associations with miRNA expression. However, only two of these SNPs were significantly associated with colon cancer.
Insights
Single nucleotide polymorphisms (SNPs) can affect microRNA (miRNA) expression and colon cancer risk. This study found that while many SNPs influence miRNA levels, only two were significantly associated with colon cancer. This highlights the complex relationship between genetic variations and cancer development.
Area of Science:
- Genetics
- Molecular Biology
- Oncology
Background:
- MicroRNAs (miRNAs) regulate gene expression and are implicated in various diseases, including cancer.
- Single nucleotide polymorphisms (SNPs) in miRNA genes or their target genes can alter miRNA-mRNA interactions and influence cancer risk.
- Investigating the association between miRNA-related SNPs and miRNA expression is crucial for understanding their role in cancer.
Purpose of the Study:
- To identify single nucleotide polymorphisms (SNPs) associated with miRNA expression levels in colon tumor and non-tumor tissues.
- To evaluate the association between these miRNA-related SNPs and colon cancer risk.
Main Methods:
- Literature review to identify miRNA-SNPs and miRNA-target gene-SNPs.
- Utilized Genome-Wide Association Study (GWAS) data with miRNA expression data from paired colon tumor and non-tumor tissues.
- Assessed 327 miRNA-SNP pairs for associations with miRNA expression and colon cancer risk.
Main Results:
- Twenty-two miRNAs showed significant genotype-dependent expression in non-tumor tissue.
- 21 SNPs were associated with altered differential miRNA expression between tumor and non-tumor tissues.
- Two specific SNPs (rs8176318 in BRCA1 and rs8905 in PRKAR1A) were significantly associated with colon cancer risk.
Conclusions:
- A significant portion (12.5%) of identified miRNA-related SNPs were associated with miRNA expression levels.
- Despite numerous associations with miRNA expression, only two SNPs demonstrated a statistically significant link to colon cancer risk.
- These findings underscore the specific genetic variants that may influence colon cancer susceptibility through miRNA regulation.
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