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Published on: May 1, 2021
Identification and functional interpretation of miRNAs affected by rare CNVs in CAKUT
Kristina Mitrovic1, Ivan Zivotic1, Ivana Kolic1
1Department of Radiobiology and Molecular Genetics, "Vinča" Institute of Nuclear Sciences, National Institute of the Republic of Serbia, University of Belgrade, Belgrade, Serbia.
Abstract:
Rare copy number variants (CNVs) are among the most common genomic disorders underlying CAKUT. miRNAs located in rare CNVs represent well-founded functional variants for human CAKUT research. The study aimed to identify and functionally interpret miRNAs most frequently affected by rare CNVs in CAKUT and to estimate the overall burden of rare CNVs on miRNA genes in CAKUT. The additional aim of this study was to experimentally confirm the effect of a rare CNV in CAKUT on candidate miRNA's expression and the subsequent change in mRNA levels of selected target genes. A database of CAKUT-associated rare CNV regions, created by literature mining, was used for mapping of the miRNA precursors. miRNAs and miRNA families, most frequently affected by rare CAKUT-associated CNVs, have been subjected to bioinformatic analysis. CNV burden analysis was performed to identify chromosomes with over/underrepresentation of miRNA genes in rare CNVs associated with CAKUT. A functional study was performed on HEK293 MIR484+/- KO and HEK293 WT cell lines, followed by the analysis of relative miRNA and mRNA target gene levels. 80% of CAKUT patients with underlying rare CNV had at least one miRNA gene overlapping the identified CNV. Network analysis of the most frequently affected miRNAs has revealed the dominant regulation of the two miRNAs, hsa-miR-484 and hsa-miR-185-5p. Additionally, miR-548 family members have shown substantial enrichment in rare CNVs in CAKUT. An over/underrepresentation of miRNA genes in rare CNVs associated with CAKUT was observed in multiple chromosomes, such as chr16, chr20, and chr21. A significant 0.37 fold downregulation of hsa-miR-484, followed by a notable upregulation of MDM2 and APAF1 and downregulation of NOTCH3 was detected in HEK293 MIR484+/- KO compared to HEK293 WT cell lines, supporting the study hypothesis. miRNA genes are frequently affected by rare CNVs in CAKUT patients. Understanding the potential of CNV-affected miRNAs to participate in CAKUT as genetic drivers represent a crucial implication for the development of novel therapeutic approaches.
Insights
Rare copy number variants (CNVs) frequently impact microRNA (miRNA) genes in congenital anomalies of the kidney and urinary tract (CAKUT). This study identifies key miRNAs affected by CNVs, revealing their potential role in CAKUT pathogenesis.
Area of Science:
- Genomics
- Molecular Biology
- Developmental Biology
Background:
- Rare copy number variants (CNVs) are significant genomic contributors to congenital anomalies of the kidney and urinary tract (CAKUT).
- MicroRNAs (miRNAs) located within CNVs are potential functional drivers of CAKUT.
- Understanding the interplay between CNVs and miRNAs is crucial for CAKUT research.
Purpose of the Study:
- To identify and functionally interpret miRNAs most affected by rare CNVs in CAKUT.
- To assess the overall burden of rare CNVs on miRNA genes in CAKUT.
- To experimentally validate the impact of CNVs on miRNA expression and downstream target genes.
Main Methods:
- Literature mining to create a database of CAKUT-associated rare CNVs.
- Bioinformatic analysis of miRNAs and miRNA families within identified CNVs.
- CNV burden analysis to detect chromosomal over/underrepresentation of miRNA genes.
- Functional study using CRISPR-Cas9 edited HEK293 cell lines (MIR484+/- KO vs. WT).
Main Results:
- 80% of CAKUT patients with CNVs had at least one overlapping miRNA gene.
- hsa-miR-484 and hsa-miR-185-5p were predominantly affected; miR-548 family showed enrichment.
- Chromosomes 16, 20, and 21 exhibited altered miRNA gene representation in CAKUT-associated CNVs.
- Experimental validation showed downregulation of hsa-miR-484 and altered expression of its targets (MDM2, APAF1, NOTCH3) in MIR484+/- KO cells.
Conclusions:
- miRNA genes are frequently implicated in rare CNVs within CAKUT patients.
- CNV-affected miRNAs represent potential genetic drivers of CAKUT.
- These findings have implications for developing novel therapeutic strategies for CAKUT.
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