The Reticulon-4 3-bp Deletion/Insertion Polymorphism Is Associated with Structural mRNA Changes and the Risk of

Pouria Pourzand1, Farhad Tabasi1,2, Fariba Fayazbakhsh3

  • 1Department of Clinical Biochemistry, School of Medicine, Zahedan University of Medical Sciences, Zahedan 9816743463, Iran.

PubMed

Insights

The rs34917480 genetic variant in the reticulon-4 (RTN4) gene may protect against breast cancer (BC) risk. This finding suggests RTN4 variants could be important biomarkers for BC development.

Area of Science:

  • Genetics
  • Oncology
  • Molecular Biology

Background:

  • Breast cancer (BC) arises from molecular disruptions affecting cell death.
  • Identifying novel biomarkers is crucial for understanding and treating BC.
  • The reticulon-4 (RTN4) gene, encoding Nogo proteins, is implicated in apoptosis and cancer.

Purpose of the Study:

  • To investigate the association between the RTN4 gene variant rs34917480 and BC risk in an Iranian population.
  • To predict the functional impact of rs34917480 on RTN4 mRNA structure and its protein-protein interaction network (PPIN).

Main Methods:

  • Case-control study involving 212 BC patients and 225 healthy controls.
  • Genotyping of rs34917480 using Amplification-Refractory Mutation System-Polymerase Chain Reaction (AS-PCR).
  • mRNA secondary structure prediction using RNAfold and PPIN construction via the STRING database.

Main Results:

  • The rs34917480 variant showed a statistically significant association with decreased BC risk across multiple genetic models (heterozygous, dominant, over-dominant, allelic).
  • Computational predictions indicated that rs34917480 may alter RTN4 mRNA thermodynamics and potentially affect protein translation.
  • RTN4's PPIN analysis highlighted its involvement in apoptosis regulation and key signaling pathways relevant to BC.

Conclusions:

  • The rs34917480 variant in the RTN4 gene is identified as a potential protective factor against breast cancer in the studied Iranian cohort.
  • These findings suggest that rs34917480 may influence BC risk through mechanisms affecting mRNA structure and protein interactions.
  • RTN4 and its genetic variations represent a promising area for future BC biomarker research.

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