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Article

Hypusinated eIF5A Promotes Ribosomal Frameshifting during Decoding of ODC Antizyme mRNA in Saccharomyces cerevisiae

by
Kai Halwas
,
Lennard-Maximilian Döring
,
Franziska Valentina Oehlert
and
R. Jürgen Dohmen
*
Center of Molecular Biosciences, Institute for Genetics, Department of Biology, Faculty of Natural Sciences and Mathematics, University of Cologne, 50674 Cologne, Germany
*
Author to whom correspondence should be addressed.
Present address: Institute of Zoology-Developmental Biology, Biocenter Cologne, Department of Biology, Faculty of Natural Sciences and Mathematics, University of Cologne, 50674 Cologne, Germany.
Present address: Max Planck Institute for Biology of Ageing, 50931 Cologne, Germany.
Int. J. Mol. Sci. 2022, 23(21), 12972; https://doi.org/10.3390/ijms232112972
Submission received: 1 October 2022 / Revised: 21 October 2022 / Accepted: 24 October 2022 / Published: 26 October 2022
(This article belongs to the Special Issue Modes of Action of Polyamine Metabolism)

Abstract

Polyamines are essential biogenic poly-cations with important roles in many cellular processes and diseases such as cancer. A rate-limiting step early in the biosynthesis of polyamines is the conversion of ornithine to putrescine by the homodimeric enzyme ornithine decarboxylase (ODC). In a conserved mechanism of posttranslational regulation, ODC antizyme (OAZ) binds to ODC monomers promoting their ubiquitin-independent degradation by the proteasome. Decoding of OAZ mRNA is unusual in that it involves polyamine-regulated bypassing of an internal translation termination (STOP) codon by a ribosomal frameshift (RFS) event. Using Saccharomyces cerevisiae, we earlier showed that high polyamine concentrations lead to increased efficiency of OAZ1 mRNA translation by binding to nascent Oaz1 polypeptide. The binding of polyamines prevents stalling of the ribosomes on OAZ1 mRNA caused by nascent Oaz1 polypeptide thereby promoting synthesis of full-length Oaz1. Polyamine depletion, however, also inhibits RFS during the decoding of constructs bearing the OAZ1 shift site lacking sequences encoding the Oaz1 parts implicated in polyamine binding. Polyamine depletion is known to impair hypusine modification of translation factor eIF5A. Using a novel set of conditional mutants impaired in the function of eIF5A/Hyp2 or its hypusination, we show here that hypusinated eIF5A is required for efficient translation across the OAZ1 RFS site. These findings identify eIF5A as a part of Oaz1 regulation, and thereby of polyamine synthesis. Additional experiments with DFMO, however, show that depletion of polyamines inhibits translation across the OAZ1 RFS site not only by reducing Hyp2 hypusination, but in addition, and even earlier, by affecting RFS more directly.
Keywords: polyamines; ornithine decarboxylase antizyme; hypusination; conditional mutants; DFMO; Oaz1 polyamines; ornithine decarboxylase antizyme; hypusination; conditional mutants; DFMO; Oaz1

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MDPI and ACS Style

Halwas, K.; Döring, L.-M.; Oehlert, F.V.; Dohmen, R.J. Hypusinated eIF5A Promotes Ribosomal Frameshifting during Decoding of ODC Antizyme mRNA in Saccharomyces cerevisiae. Int. J. Mol. Sci. 2022, 23, 12972. https://doi.org/10.3390/ijms232112972

AMA Style

Halwas K, Döring L-M, Oehlert FV, Dohmen RJ. Hypusinated eIF5A Promotes Ribosomal Frameshifting during Decoding of ODC Antizyme mRNA in Saccharomyces cerevisiae. International Journal of Molecular Sciences. 2022; 23(21):12972. https://doi.org/10.3390/ijms232112972

Chicago/Turabian Style

Halwas, Kai, Lennard-Maximilian Döring, Franziska Valentina Oehlert, and R. Jürgen Dohmen. 2022. "Hypusinated eIF5A Promotes Ribosomal Frameshifting during Decoding of ODC Antizyme mRNA in Saccharomyces cerevisiae" International Journal of Molecular Sciences 23, no. 21: 12972. https://doi.org/10.3390/ijms232112972

APA Style

Halwas, K., Döring, L.-M., Oehlert, F. V., & Dohmen, R. J. (2022). Hypusinated eIF5A Promotes Ribosomal Frameshifting during Decoding of ODC Antizyme mRNA in Saccharomyces cerevisiae. International Journal of Molecular Sciences, 23(21), 12972. https://doi.org/10.3390/ijms232112972

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