Correlation between the RNA Expression and the DNA Methylation of Estrogen Receptor Genes in Normal and Malignant

Ju Rong1, Xiaojun Xie2, Yongdong Niu3

  • 1The First Clinical Institute, Shantou University Medical College, Shantou 515041, China.

Insights

Estrogen receptors ERα, ERβ, and GPER1 show unique expression patterns across human tissues and cancers. GPER1 consistently decreases in malignancies, suggesting a tumor inhibitory role, while DNA methylation impacts ERα and GPER1 expression and tumor survival.

Area of Science:

  • Endocrinology and Molecular Biology
  • Cancer Research
  • Genomics and Epigenetics

Background:

  • Estrogen receptors (ERα, ERβ, GPER1) are crucial for estrogen's functions.
  • Estrogen receptor signaling pathways are well-studied, but their tissue-specific expression and regulation remain unclear.
  • Understanding these receptors' expression and methylation is vital for exploring their roles in health and disease.

Purpose of the Study:

  • To comprehensively analyze the expression profile of estrogen receptors (ERα, ERβ, GPER1) in normal and malignant human tissues.
  • To investigate the DNA methylation status of estrogen receptor genes and its correlation with gene expression and tumor survival.
  • To uncover novel physiological and pathophysiological functions of estrogen signaling.

Main Methods:

  • Utilized human protein atlas, TCGA, and GTEx databases for gene expression profiling via GEPIA.
  • Analyzed DNA methylation status using Wanderer and cBioPortal software.
  • Assessed the association between CG methylation and tumor survival using the MethSurv tool.

Main Results:

  • ERα, ERβ, and GPER1 exhibit distinct expression patterns in various tissues and cancers.
  • ERβ RNA expression was higher in male testes than in females; ERα RNA levels positively correlated with androgen receptor in normal tissues.
  • GPER1 expression consistently decreased across multiple malignancies, indicating a tumor-inhibitory function. DNA methylation correlated with ERα and GPER1 expression and tumor survival, but not always with gene expression levels.

Conclusions:

  • Estrogen receptors display unique expression profiles and regulatory mechanisms.
  • GPER1's decreased expression in cancers suggests a potential tumor suppressor role.
  • DNA methylation of estrogen receptor genes influences tumor progression and potentially therapy response, independent of direct gene expression regulation.