Comparison of methylation estimates obtained via MinION nanopore sequencing and sanger bisulfite sequencing in the TRPA1 promoter region

BMC Med Genomics. 2023 Oct 23;16(1):257. doi: 10.1186/s12920-023-01694-6.

Abstract

Background: Bisulfite sequencing has long been considered the gold standard for measuring DNA methylation at single CpG resolution. However, in recent years several new approaches like nanopore sequencing have been developed due to hints for a partial error-proneness of bisulfite sequencing. Since these errors were shown to be sequence-specific, we aimed to verify the methylation data of a particular region of the TRPA1 promoter from our previous studies obtained by bisulfite sequencing.

Methods: We compared methylation rates determined by direct bisulfite sequencing and nanopore sequencing following Cas9-mediated PCR-free enrichment.

Results: We could show that CpG methylation levels above 20% corroborate well with our previous data. Within the range between 0 and 20% methylation, however, Sanger sequencing data have to be interpreted cautiously, at least in the investigated region of interest (TRPA1 promotor region).

Conclusion: Based on the investigation of the TRPA1- region as an example, the present work can help in choosing the right method out of the two current main approaches for methylation analysis for different individual settings regarding many factors like cohort size, costs and prerequisites that should be fulfilled for each method. All in all, both methods have their raison d'être. Furthermore, the present paper contains and illustrates some important basic information and explanation of how guide RNAs should be located for an optimal outcome in Cas9 mediated PCR free target enrichment.

Keywords: Bisulfite sequencing; Cas9-mediated PCR-free enrichment, guideRNAs; Epigenetics; Methylation; Nanopore sequencing; TRPA1.

Publication types

  • Comparative Study
  • Research Support, Non-U.S. Gov't

MeSH terms

  • CpG Islands
  • DNA Methylation
  • Humans
  • Nanopore Sequencing*
  • Promoter Regions, Genetic
  • Sequence Analysis, DNA / methods
  • Sulfites
  • TRPA1 Cation Channel / genetics

Substances

  • hydrogen sulfite
  • Sulfites
  • TRPA1 Cation Channel
  • TRPA1 protein, human