Tehran University of Medical Sciences

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The Reticulon-4 3-Bp Deletion/Insertion Polymorphism Is Associated With Structural Mrna Changes and the Risk of Breast Cancer: A Population-Based Case–Control Study With Bioinformatics Analysis Publisher



Pourzand P1 ; Tabasi F1, 2 ; Fayazbakhsh F3 ; Sarhadi S4 ; Bahari G1, 5 ; Mohammadi M3 ; Jomepour S6 ; Nafeli M3 ; Mosayebi F7 ; Heravi M3 ; Taheri M8, 9 ; Hashemi M1, 8 ; Ghavami S10, 11, 12, 13
Authors

Source: Life Published:2023


Abstract

Breast cancer (BC) is a complex disease caused by molecular events that disrupt cellular survival and death. Discovering novel biomarkers is still required to better understand and treat BC. The reticulon-4 (RTN4) gene, encoding Nogo proteins, plays a critical role in apoptosis and cancer development, with genetic variations affecting its function. We investigated the rs34917480 in RTN4 and its association with BC risk in an Iranian population sample. We also predicted the rs34917480 effect on RTN4 mRNA structure and explored the RTN4’s protein–protein interaction network (PPIN) and related pathways. In this case–control study, 437 women (212 BC and 225 healthy) were recruited. The rs34917480 was genotyped using AS-PCR, mRNA secondary structure was predicted with RNAfold, and PPIN was constructed using the STRING database. Our findings revealed that this variant was associated with a decreased risk of BC in heterozygous (p = 0.012), dominant (p = 0.015), over-dominant (p = 0.017), and allelic (p = 0.035) models. Our prediction model showed that this variant could modify RTN4’s mRNA thermodynamics and potentially its translation. RTN4’s PPIN also revealed a strong association with apoptosis regulation and key signaling pathways highly implicated in BC. Consequently, our findings, for the first time, demonstrate that rs34917480 could be a protective factor against BC in our cohort, probably via preceding mechanisms. © 2023 by the authors.
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