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Disease-associated inosine misincorporation into RNA hinders translation.
Schroader, Jacob H; Jones, Lindsey A; Meng, Ryan; Shorrock, Hannah K; Richardson, Jared I; Shaughnessy, Sharon M; Lin, Qishan; Begley, Thomas J; Berglund, J Andrew; Fuchs, Gabriele; Handley, Mark T; Reddy, Kaalak.
Afiliação
  • Schroader JH; The RNA Institute, University at Albany, State University of New York, Albany, NY 12222, USA.
  • Jones LA; Department of Biological Sciences, University at Albany, State University of New York, Albany, NY 12222, USA.
  • Meng R; The RNA Institute, University at Albany, State University of New York, Albany, NY 12222, USA.
  • Shorrock HK; The RNA Institute, University at Albany, State University of New York, Albany, NY 12222, USA.
  • Richardson JI; The RNA Institute, University at Albany, State University of New York, Albany, NY 12222, USA.
  • Shaughnessy SM; The RNA Institute, University at Albany, State University of New York, Albany, NY 12222, USA.
  • Lin Q; Department of Biochemistry and Molecular Biology, Center for NeuroGenetics, University of Florida, Gainesville, FL 32611, USA.
  • Begley TJ; The RNA Institute, University at Albany, State University of New York, Albany, NY 12222, USA.
  • Berglund JA; The RNA Institute, University at Albany, State University of New York, Albany, NY 12222, USA.
  • Fuchs G; RNA Epitranscriptomics & Proteomics Resource, University at Albany, Albany, NY 12222, USA.
  • Handley MT; The RNA Institute, University at Albany, State University of New York, Albany, NY 12222, USA.
  • Reddy K; Department of Biological Sciences, University at Albany, State University of New York, Albany, NY 12222, USA.
Nucleic Acids Res ; 50(16): 9306-9318, 2022 09 09.
Article em En | MEDLINE | ID: mdl-35979951
Failure to prevent accumulation of the non-canonical nucleotide inosine triphosphate (ITP) by inosine triphosphate pyrophosphatase (ITPase) during nucleotide synthesis results in misincorporation of inosine into RNA and can cause severe and fatal developmental anomalies in humans. While the biochemical activity of ITPase is well understood, the pathogenic basis of ITPase deficiency and the molecular and cellular consequences of ITP misincorporation into RNA remain cryptic. Here, we demonstrate that excess ITP in the nucleotide pool during in vitro transcription results in T7 polymerase-mediated inosine misincorporation in luciferase RNA. In vitro translation of inosine-containing luciferase RNA reduces resulting luciferase activity, which is only partly explained by reduced abundance of the luciferase protein produced. Using Oxford Nanopore Direct RNA sequencing, we reveal inosine misincorporation to be stochastic but biased largely towards misincorporation in place of guanosine, with evidence for misincorporation also in place of cytidine, adenosine and uridine. Inosine misincorporation into RNA is also detected in Itpa-null mouse embryonic heart tissue as an increase in relative variants compared with the wild type using Illumina RNA sequencing. By generating CRISPR/Cas9 rat H9c2 Itpa-null cardiomyoblast cells, we validate a translation defect in cells that accumulate inosine within endogenous RNA. Furthermore, we observe hindered cellular translation of transfected luciferase RNA containing misincorporated inosine in both wild-type and Itpa-null cells. We therefore conclude that inosine misincorporation into RNA perturbs translation, thus providing mechanistic insight linking ITPase deficiency, inosine accumulation and pathogenesis.
Assuntos

Texto completo: 1 Base de dados: MEDLINE Assunto principal: RNA / Inosina Trifosfato Tipo de estudo: Risk_factors_studies Limite: Animals / Humans Idioma: En Ano de publicação: 2022 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: RNA / Inosina Trifosfato Tipo de estudo: Risk_factors_studies Limite: Animals / Humans Idioma: En Ano de publicação: 2022 Tipo de documento: Article