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Article

Histidine Methylation of Yeast Ribosomal Protein Rpl3p Is Required for Proper 60S Subunit Assembly

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Pages 2903-2916 | Received 12 Dec 2013, Accepted 21 May 2014, Published online: 20 Mar 2023
 

Abstract

Histidine protein methylation is an unusual posttranslational modification. In the yeast Saccharomyces cerevisiae, the large ribosomal subunit protein Rpl3p is methylated at histidine 243, a residue that contacts the 25S rRNA near the P site. Rpl3p methylation is dependent upon the presence of Hpm1p, a candidate seven-beta-strand methyltransferase. In this study, we elucidated the biological activities of Hpm1p in vitro and in vivo. Amino acid analyses reveal that Hpm1p is responsible for all of the detectable protein histidine methylation in yeast. The modification is found on a polypeptide corresponding to the size of Rpl3p in ribosomes and in a nucleus-containing organelle fraction but was not detected in proteins of the ribosome-free cytosol fraction. In vitro assays demonstrate that Hpm1p has methyltransferase activity on ribosome-associated but not free Rpl3p, suggesting that its activity depends on interactions with ribosomal components. hpm1 null cells are defective in early rRNA processing, resulting in a deficiency of 60S subunits and translation initiation defects that are exacerbated in minimal medium. Cells lacking Hpm1p are resistant to cycloheximide and verrucarin A and have decreased translational fidelity. We propose that Hpm1p plays a role in the orchestration of the early assembly of the large ribosomal subunit and in faithful protein production.

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Article of Significant Interest Selected from This Issue by the Editors

ACKNOWLEDGMENTS

This work was supported by NIH grants GM026020 (to S.G.C.) and GM061518 (to G.F.C.). K.R. and M.C.D. were supported by NIH training program T32GM007185.

We thank James Wohlschlegel and Joseph Loo for their helpful advice. We also thank David Bedwell and Ming Du for providing the translational fidelity plasmids and help with the dual-luciferase assay.

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