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Published on: January 30, 2019
G‑Quadruplex and i‑Motif Structures in the SHMT1 5'UTR Modulate Gene Expression
Rosalia M Palumbo1, Manju Kasaju1, Sophia C Hershey1
1Department of Chemistry & Biochemistry, Duquesne University, Pittsburgh, Pennsylvania 15282, United States.
Multiple sclerosis involves DNA methylation gene dysregulation. Researchers found that G-quadruplex and i-motif structures in the SHMT1 gene regulate its expression, offering a potential therapeutic target for this neurodegenerative disease.
Area of Science:
- Neuroscience
- Molecular Biology
- Genetics
Background:
- Multiple sclerosis (MS) is a fatal neurodegenerative disease characterized by myelin sheath erosion and neuronal death.
- Current MS research focuses on dysregulated genes involved in DNA methylation, a critical process for gene expression and cellular health.
- Serine hydroxymethyltransferase 1 (SHMT1) is upregulated in MS patients and plays a key role in DNA methylation.
Purpose of the Study:
- To characterize DNA secondary structures in the SHMT1 gene.
- To investigate the regulatory role of these structures on SHMT1 expression.
- To explore potential therapeutic targets for multiple sclerosis.
Main Methods:
- Structural analysis of G-quadruplex (GQ) and i-motif (iM) structures in the SHMT1 5' untranslated region (UTR) DNA and mRNA.
- Reporter gene assays to assess the impact of GQ/iM structures on gene and protein expression.
Main Results:
- Hybrid 3 + 1 GQ and iM structures were identified in the SHMT1 DNA 5' UTR.
- A parallel GQ structure was found in the SHMT1 mRNA.
- These GQ/iM structures were shown to suppress reporter gene mRNA levels and protein expression.
Conclusions:
- GQ and iM structures are integral to the regulation of SHMT1.
- These DNA and mRNA secondary structures represent potential therapeutic targets for multiple sclerosis intervention.
- Targeting SHMT1 regulation via GQ/iM structures may offer a novel treatment strategy for MS.
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