AI Article Synopsis

  • * The study reviewed the effects of 1CM-related nutrients on breast cancer and analyzed single nucleotide polymorphisms in genes related to 1CM, focusing on their significance in the Caucasian population.
  • * Results indicate that B-complex vitamins from 1CM are crucial for preventing breast cancer and that associated genes are overexpressed in breast tissue, suggesting a need for further research on their interaction in cancer development.

Article Abstract

Carcinogenesis is closely related to the expression, maintenance, and stability of DNA. These processes are regulated by one-carbon metabolism (1CM), which involves several vitamins of the complex B (folate, B2, B6, and B12), whereas alcohol disrupts the cycle due to the inhibition of folate activity. The relationship between nutrients related to 1CM (all aforementioned vitamins and alcohol) in breast cancer has been reviewed. The interplay of genes related to 1CM was also analyzed. Single nucleotide polymorphisms located in those genes were selected by considering the minor allele frequency in the Caucasian population and the linkage disequilibrium. These genes were used to perform several in silico functional analyses (considering corrected -values < 0.05 as statistically significant) using various tools (FUMA, ShinyGO, and REVIGO) and databases such as the Kyoto Encyclopedia of Genes and Genomes (KEGG) and GeneOntology (GO). The results of this study showed that intake of 1CM-related B-complex vitamins is key to preventing breast cancer development and survival. Also, the genes involved in 1CM are overexpressed in mammary breast tissue and participate in a wide variety of biological phenomena related to cancer. Moreover, these genes are involved in alterations that give rise to several types of neoplasms, including breast cancer. Thus, this study supports the role of one-carbon metabolism B-complex vitamins and genes in breast cancer; the interaction between both should be addressed in future studies.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11311893PMC
http://dx.doi.org/10.3390/ijms25158175DOI Listing

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