1. Academic Validation
  2. Human 2'-phosphodiesterase localizes to the mitochondrial matrix with a putative function in mitochondrial RNA turnover

Human 2'-phosphodiesterase localizes to the mitochondrial matrix with a putative function in mitochondrial RNA turnover

  • Nucleic Acids Res. 2011 May;39(9):3754-70. doi: 10.1093/nar/gkq1282.
Jesper Buchhave Poulsen 1 Kasper Røjkjær Andersen Karina Hansen Kjær Fiona Durand Pierre Faou Anna Lindeløv Vestergaard Gert Hoy Talbo Nick Hoogenraad Ditlev Egeskov Brodersen Just Justesen Pia Møller Martensen
Affiliations

Affiliation

  • 1 Department of Molecular Biology, Aarhus University, C. F. Møllers Allé 3, Denmark.
Abstract

The vertebrate 2-5A system is part of the innate immune system and central to cellular Antiviral defense. Upon activation by viral double-stranded RNA, 5'-triphosphorylated, 2'-5'-linked oligoadenylate polyribonucleotides (2-5As) are synthesized by one of several 2'-5'-oligoadenylate synthetases. These unusual Oligonucleotides activate RNase L, an unspecific endoribonuclease that mediates viral and cellular RNA breakdown. Subsequently, the 2-5As are removed by a 2'-phosphodiesterase (2'-PDE), an Enzyme that apart from breaking 2'-5' bonds also degrades regular, 3'-5'-linked oligoadenylates. Interestingly, 2'-PDE shares both functionally and structurally characteristics with the CCR4-type exonuclease-endonuclease-phosphatase family of deadenylases. Here we show that 2'-PDE locates to the mitochondrial matrix of human cells, and comprise an active 3'-5' exoribonuclease exhibiting a preference for oligo-adenosine RNA like canonical cytoplasmic deadenylases. Furthermore, we document a marked negative association between 2'-PDE and mitochondrial mRNA levels following siRNA-directed knockdown and plasmid-mediated overexpression, respectively. The results indicate that 2'-PDE, apart from playing a role in the cellular immune system, may also function in mitochondrial RNA turnover.

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