Bottom-up design of small molecules that stimulate exon 10 skipping in mutant MAPT pre-mRNA

Chembiochem. 2014 Sep 22;15(14):2041-4. doi: 10.1002/cbic.201402069. Epub 2014 Aug 12.

Abstract

One challenge in chemical biology is to develop small molecules that control cellular protein content. The amount and identity of proteins are influenced by the RNAs that encode them; thus, protein content in a cell could be affected by targeting mRNA. However, RNA has been traditionally difficult to target with small molecules. In this report, we describe controlling the protein products of the mutated microtubule-associated protein tau (MAPT) mature mRNA with a small molecule. MAPT mutations in exon 10 are associated with inherited frontotemporal dementia and Parkinsonism linked to chromosome 17 (FTDP-17), an incurable disease that is directly caused by increased inclusion of exon 10 in MAPT mRNA. Recent studies have shown that mutations within a hairpin at the MAPT exon 10-intron junction decrease the thermodynamic stability of the RNA, increasing binding to U1 snRNP and thus exon 10 inclusion. Therefore, we designed small molecules that bind and stabilize a mutant MAPT by using Inforna, a computational approach based on information about RNA-small-molecule interactions. The optimal compound selectively bound the mutant MAPT hairpin and thermodynamically stabilized its folding, facilitating exon 10 exclusion.

Keywords: chemical biology; drug design; mRNA; nucleic acids; small molecules.

Publication types

  • Research Support, N.I.H., Extramural
  • Research Support, Non-U.S. Gov't

MeSH terms

  • Drug Design*
  • Exons / drug effects*
  • Humans
  • Mutation / drug effects
  • Parkinsonian Disorders / drug therapy
  • Parkinsonian Disorders / genetics
  • RNA Precursors / genetics*
  • RNA, Messenger / genetics*
  • Small Molecule Libraries / chemistry*
  • Small Molecule Libraries / pharmacology*
  • tau Proteins / genetics*

Substances

  • MAPT protein, human
  • RNA Precursors
  • RNA, Messenger
  • Small Molecule Libraries
  • tau Proteins