The importance of mRNA structure in determining the pathogenicity of synonymous and non-synonymous mutations in haemophilia

Haemophilia. 2017 Jan;23(1):e8-e17. doi: 10.1111/hae.13107. Epub 2016 Dec 9.

Abstract

Introduction: Mutational analysis is commonly used to support the diagnosis and management of haemophilia. This has allowed for the generation of large mutation databases which provide unparalleled insight into genotype-phenotype relationships. Haemophilia is associated with inversions, deletions, insertions, nonsense and missense mutations. Both synonymous and non-synonymous mutations influence the base pairing of messenger RNA (mRNA), which can alter mRNA structure, cellular half-life and ribosome processivity/elongation. However, the role of mRNA structure in determining the pathogenicity of point mutations in haemophilia has not been evaluated.

Aim: To evaluate mRNA thermodynamic stability and associated RNA prediction software as a means to distinguish between neutral and disease-associated mutations in haemophilia.

Methods: Five mRNA structure prediction software programs were used to assess the thermodynamic stability of mRNA fragments carrying neutral vs. disease-associated and synonymous vs. non-synonymous point mutations in F8, F9 and a third X-linked gene, DMD (dystrophin).

Results: In F8 and DMD, disease-associated mutations tend to occur in more structurally stable mRNA regions, represented by lower MFE (minimum free energy) levels. In comparing multiple software packages for mRNA structure prediction, a 101-151 nucleotide fragment length appears to be a feasible range for structuring future studies.

Conclusion: mRNA thermodynamic stability is one predictive characteristic, which when combined with other RNA and protein features, may offer significant insight when screening sequencing data for novel disease-associated mutations. Our results also suggest potential utility in evaluating the mRNA thermodynamic stability profile of a gene when determining the viability of interchanging codons for biological and therapeutic applications.

Keywords: F8; MFE; RNA prediction software; haemophilia; mRNA thermodynamic stability; synonymous mutations.

MeSH terms

  • DNA Mutational Analysis / methods*
  • Hemophilia A / genetics*
  • Humans
  • Mutation
  • RNA, Messenger / genetics*

Substances

  • RNA, Messenger

Associated data

  • GENBANK/NM_004006.2
  • GENBANK/NM_000132.3
  • GENBANK/NM_000133.3