Expression profile of microRNAs in the testes of patients with Klinefelter syndrome

Sci Rep. 2020 Jul 10;10(1):11470. doi: 10.1038/s41598-020-68294-7.

Abstract

Klinefelter syndrome (KS) is the most common sex chromosome aneuploidy. A distinctive characteristic of KS is oligozoospermia. Despite multiple studies that have described the natural history of the degenerative process of germ cells in patients with KS, the molecular mechanisms that initiate this process are not well characterized. MicroRNA (miRNA)-mediated post-transcriptional control mechanisms have been increasingly recognized as important regulators of spermatogenesis; however, only a few studies have evaluated the role of miRNAs in the gonadal failure of these patients. Here, we describe a differential expression profile for the miRNAs in testicular tissue samples taken from KS patients. We analysed testicular tissue samples from 4 KS patients and 5 control patients (obstructive azoospermia) through next-generation sequencing, which can provide information about the mechanisms involved in the degeneration of germ cells. A distinctive differential expression profile was identified for 166 miRNAs in the KS patients: 66 were upregulated, and 100 were downregulated. An interactome analysis was performed for 7 of the upregulated and the 20 downregulated miRNAs. The results showed that the target genes are involved in the development, proliferation, and differentiation processes of spermatogenesis, which may explain their role in the development of infertility. This is the first report of a miRNA expression profile generated from testicular tissue samples of KS patients.

MeSH terms

  • Adult
  • Azoospermia / genetics*
  • Azoospermia / pathology
  • Gene Expression Regulation, Developmental / genetics
  • Germ Cells / metabolism
  • Germ Cells / pathology
  • Humans
  • Klinefelter Syndrome / genetics*
  • Klinefelter Syndrome / pathology
  • Male
  • MicroRNAs / genetics*
  • Sperm Retrieval
  • Spermatogenesis / genetics*
  • Testis / growth & development
  • Testis / metabolism

Substances

  • MicroRNAs