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Transcriptome-driven integrative exploration of functional state of ureter tissue affected by CAKUT
Ivan Jovanovic1, Maja Zivkovic1, Mirjana Kostic2
1VINČA Institute of Nuclear Sciences, Laboratory for Radiobiology and Molecular Genetics, University of Belgrade, Belgrade, Serbia.
Aims:
(1) to identify the most dysregulated genes in ureter tissue affected by congenital anomalies of the kidney and urinary tract (CAKUT) and to extract the biological meaning of these markers; (2) to describe the key molecular networks in CAKUT and to provide expression validation of the genes selected from these networks.
Main Methods:
Transcriptome data was obtained from ureter samples of CAKUT patients and controls by Illumina iScan microarray. Identification of differentially expressed genes was coupled with subsequent bioinformatics analyses. Expression of candidate genes was validated by qRT-PCR.
Key Findings:
Analysis of the transcriptome led to the identification of 78 commonly dysregulated genes in CAKUT tissue compared to controls. Integrative bioinformatic analyses of differentially expressed genes identified 7 major networks. The targets for qRT-PCR validation were selected as members of the major molecular networks in CAKUT, which had both, the significant high fold change and biological relevance for CAKUT. By qRT-PCR the substantial increase of LCN2, PROM1, SOSTDC1, and decrease of INA, RASD1 and TAC3 mRNA levels was confirmed.
Significance:
Since CAKUT is a leading cause of end-stage renal disease in children, the search for molecular targets for postnatal therapy is of particular interest. Data described in this study represents the gene expression profile and significant molecular networks specific to human ureter affected by CAKUT. The discovery of impaired molecular factors and processes is the step towards the uncovering of the key mechanisms that reflect CAKUT postnatally and could lead to the affected tissue deterioration and end organ damage.
Insights
This study identified 78 dysregulated genes and key molecular networks in ureter tissue from congenital anomalies of the kidney and urinary tract (CAKUT) patients. These findings offer potential molecular targets for future CAKUT therapies.
Area of Science:
- Urology
- Genetics
- Molecular Biology
Background:
- Congenital anomalies of the kidney and urinary tract (CAKUT) are a leading cause of pediatric end-stage renal disease.
- Understanding the molecular mechanisms underlying CAKUT is crucial for developing effective postnatal therapies.
Purpose of the Study:
- To identify dysregulated genes and biological pathways in ureter tissue affected by CAKUT.
- To validate the expression of key candidate genes within these molecular networks.
Main Methods:
- Transcriptome analysis of ureter samples from CAKUT patients and controls using Illumina iScan microarray.
- Bioinformatic analysis to identify differentially expressed genes and molecular networks.
- Quantitative reverse transcription PCR (qRT-PCR) for expression validation of selected genes.
Main Results:
- Identification of 78 commonly dysregulated genes in CAKUT ureter tissue.
- Discovery of 7 major molecular networks implicated in CAKUT pathogenesis.
- Validation of increased mRNA levels for LCN2, PROM1, SOSTDC1 and decreased levels for INA, RASD1, TAC3.
Conclusions:
- The identified gene expression profile and molecular networks provide insights into CAKUT pathogenesis.
- These findings highlight potential molecular targets for postnatal therapeutic interventions in CAKUT.
- Understanding these molecular disruptions is a step towards preventing end-organ damage in CAKUT patients.
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