CHST7 Methylation Status Related to the Proliferation and Differentiation of Pituitary Adenomas

Cells. 2022 Aug 4;11(15):2400. doi: 10.3390/cells11152400.

Abstract

Pituitary adenomas (PAs) are the second most common primary brain tumor and may develop from any of the cell lineages responsible for producing the different pituitary hormones. DNA methylation is one of the essential epigenetic mechanisms in cancers, including PAs. In this study, we measured the expression profile and promoter methylation status of carbohydrate sulfotransferase 7 (CHST7) in patients with PA; then, we investigated the effect of the CHST7 methylation status on the proliferation and differentiation of PAs. The volcano map and Metascape results showed that the levels of CHST7 were related to the lineages' differentiation and the cell adhesion of PAs, and patients with low CHST7 had greater chances of having an SF-1 lineage (p = 0.002) and optic chiasm compression (p = 0.007). Reactome pathway analysis revealed that most of the DEGs involved in the regulation of TP53 regulated the transcription of cell cycle genes (HSA-6791312 and HSA6804116) in patients with high CHST7. Correlation analysis showed that CHST7 was significantly correlated with the eIF2/ATF4 pathway and mitochondrion-related genes. The AUC of ROC showed that CHST7 (0.288; 95% CI: 0.187-0.388) was superior to SF-1 (0.555; 95% CI: 0.440-0.671) and inferior to FSHB (0.804; 95% CI: 0.704-0.903) in forecasting the SF-1 lineage (p < 0.001). The SF-1 lineage showed a higher methylation frequency for CHST7 than the Pit-1 and TBX19 lineages (p = 0.009). Furthermore, as the key molecule of the hypothalamic-pituitary-gonadal axis, inhibin βE (INHBE) was positively correlated with the levels of CHST7 (r = 0.685, p < 0.001). In summary, CHST7 is a novel pituitary gland specific protein in SF-1 lineage adenomas with a potential role in gonadotroph cell proliferation and lineage differentiation in PAs.

Trial registration: ClinicalTrials.gov NCT03271918 NCT00939523.

Keywords: CHST7; CHST71; DNA methylation; cell differentiation; cell proliferation; lineage; methylation; pituitary adenomas; tumor differentiation; tumor proliferation.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Adenoma* / genetics
  • Adenoma* / pathology
  • Carbohydrate Sulfotransferases
  • Cell Proliferation
  • DNA Methylation*
  • Humans
  • Pituitary Neoplasms* / genetics
  • Pituitary Neoplasms* / metabolism
  • Sulfotransferases / genetics*

Substances

  • Sulfotransferases

Associated data

  • ClinicalTrials.gov/NCT03271918
  • ClinicalTrials.gov/NCT00939523

Grants and funding

This work was financially supported by the Hebei Natural Science Foundation of China (H2020105017) and the Beijing Natural Science Foundation of China (7162035).