A Hairpin Ribozyme Derived Spliceozyme

Chembiochem. 2023 Jul 3;24(13):e202300204. doi: 10.1002/cbic.202300204. Epub 2023 Jun 2.

Abstract

The vast majority of RNA splicing in today's organisms is achieved by the highly regulated and precise removal of introns from pre-mRNAs via the spliceosome. Here we present a model of how RNA splicing may have occurred in earlier life forms. We have designed a hairpin ribozyme derived spliceozyme that mediates two RNA cleavages and one ligation event at specific positions and thus cuts a segment (intron) out of a parent RNA and ligates the remaining fragments (exons). The cut-out intron then performs a downstream function, acting as a positive regulator of the activity of a bipartite DNAzyme. This simple scenario shows how small RNAs can perform complex RNA processing dynamics, involving the generation of new phenotypes by restructuring segments of given RNA species, as well as delivering small RNAs that may play a functional role in downstream processes.

Keywords: cleavage; hairpin ribozyme; ligation; spliceozyme; splicing.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Introns
  • Nucleic Acid Conformation
  • RNA
  • RNA Precursors / genetics
  • RNA Splicing
  • RNA, Catalytic* / metabolism

Substances

  • hairpin ribozyme
  • RNA, Catalytic
  • RNA
  • RNA Precursors