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DNA methylation profiling in nonfunctioning pituitary adenomas

DNA methylation profiling in nonfunctioning pituitary adenomas

Abstract

Nonfunctioning pituitary adenomas (NFPAs) are among the most frequent intracranial tumors but their molecular background, including changes in epigenetic regulation, remains poorly understood. We performed genome-wide DNA methylation profiling of 34 NFPAs and normal pituitary samples. Methylation status of the selected genomic regions and expression level of corresponding genes were assessed in a group of 75 patients. NFPAs exhibited distinct global methylation profile as compared to normal pituitary. Aberrant DNA methylation appears to contribute to deregulation of the cancer-related pathways as shown by preliminary functional analysis. Promoter hypermethylation and decreased expression level of SFN, STAT5A, DUSP1, PTPRE and FGFR2 was confirmed in the enlarged group of NFPAs. Difference in the methylation profiles between invasive and non-invasive NFPAs is very slight. Nevertheless, invasiveness-related aberrant epigenetic deregulation of the particular genes was found including upregulation of ITPKB and downregulation CNKSR1 in invasive tumors. Overall design: Genome-wide DNA methylation profiling involved 31 gonadotroph NFPAs, two NFPAs that were positive for gonadotropins (FSH, LH, α-subunit), as well as TSH, and one sample classified as null-cell adenoma. Six samples of normal human pituitaries obtained from autopsies were used for DNA methylation profiling and treated as control samples.

Keywords

Transcriptomics

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