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Identification of Differentially Expressed K-Ras Transcript Variants in Patients With Leiomyoma
Nooshin Zolfaghari1, Shirin Shahbazi2, Mahnaz Torfeh3
11 Department of Molecular Genetics, Tehran Medical Branch, Islamic Azad University, Tehran, Iran.
Purpose:
Molecular studies have demonstrated a wide range of gene expression variations in uterine leiomyoma. The rat sarcoma virus/rapidly accelerated fibrosarcoma/mitogen-activated protein kinase (RAS/RAF/MAPK) is the crucial cellular pathway in transmitting external signals into nucleus. Deregulation of this pathway contributes to excessive cell proliferation and tumorigenesis. The present study aims to investigate the expression profile of the K-Ras transcripts in tissue samples from patients with leiomyoma.
Methods:
The patients were leiomyoma cases who had no mutation in mediator complex subunit 12 ( MED12) gene. A quantitative approach has been applied to determine the difference in the expression of the 2 main K-Ras messenger RNA (mRNA) variants. The comparison between gene expression levels in leiomyoma and normal myometrium group was performed using relative expression software tool.
Results:
The expression of K-Ras4B gene was upregulated in leiomyoma group ( P = .016), suggesting the involvement of K-Ras4B in the disease pathogenesis. Pairwise comparison of the K-Ras4B expression between each leiomyoma tissue and its matched adjacent normal myometrium revealed gene upregulation in 68% of the cases. The expression of K-Ras4A mRNA was relatively upregulated in leiomyoma group ( P = .030). In addition, the mean expression of K-Ras4A gene in leiomyoma tissues relative to normal samples was 4.475 (95% confidence interval: 0.10-20.42; standard error: 0.53-12.67). In total, 58% of the cases showed more than 2-fold increase in K-Ras4A gene expression.
Conclusion:
Our results demonstrated increased expression of both K-Ras mRNA splicing variants in leiomyoma tissue. However, the ultimate result of KRAS expression on leiomyoma development depends on the overall KRAS isoform balance and, consequently, on activated signaling pathways.
Insights
This study found increased K-Ras (Kirsten rat sarcoma virus) gene expression in uterine leiomyoma tissues. Both K-Ras4A and K-Ras4B variants were upregulated, suggesting their role in leiomyoma development.
Area of Science:
- Molecular biology
- Oncology
- Genetics
Background:
- Uterine leiomyomas exhibit diverse gene expression patterns.
- The RAS/RAF/MAPK pathway is critical for cell signaling and proliferation.
- Pathway deregulation can lead to tumorigenesis.
Purpose of the Study:
- To investigate the expression profile of K-Ras transcripts in uterine leiomyoma tissues.
- To compare K-Ras messenger RNA (mRNA) variant expression between leiomyoma and normal myometrium.
- To analyze K-Ras expression in leiomyoma cases without MED12 mutations.
Main Methods:
- Quantitative analysis of K-Ras mRNA variants (K-Ras4A and K-Ras4B).
- Comparison of gene expression levels in leiomyoma versus normal myometrium.
- Utilized relative expression software tool for analysis.
Main Results:
- K-Ras4B gene expression was significantly upregulated in leiomyoma tissues (P = .016).
- K-Ras4A mRNA was also relatively upregulated in leiomyoma (P = .030).
- 68% of cases showed K-Ras4B upregulation, and 58% showed >2-fold K-Ras4A increase.
Conclusions:
- Both K-Ras mRNA splicing variants are increased in leiomyoma tissue.
- The overall KRAS isoform balance influences leiomyoma development via signaling pathways.
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