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Gene Expression

In Vitro Import of a Nuclearly Encoded tRNA into Mitochondria of Solanum tuberosum

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Pages 4000-4012 | Received 13 Jan 2003, Accepted 14 Mar 2003, Published online: 27 Mar 2023
 

Abstract

Some of the mitochondrial tRNAs of higher plants are nuclearly encoded and imported into mitochondria. The import of tRNAs encoded in the nucleus has been shown to be essential for proper protein translation within mitochondria of a variety of organisms. Here, we report the development of an in vitro assay for import of nuclearly encoded tRNAs into plant mitochondria. This in vitro system utilizes isolated mitochondria from Solanum tuberosum and synthetic tRNAs transcribed from cloned nuclear tRNA genes. Although incubation of radioactively labeled in vitro-transcribed tRNAAla, tRNAPhe, and tRNAMet-e with isolated potato mitochondria resulted in importation, as measured by nuclease protection, the amount of tRNA transcripts protected at saturation was at least five times higher for tRNAAla than for the two other tRNAs. This difference in in vitro saturation levels of import is consistent with the in vivo localization of these tRNAs, since cytosolic tRNAAla is naturally imported into potato mitochondria whereas tRNAPhe and tRNAMet-e are not. Characterization of in vitro tRNA import requirements indicates that mitochondrial tRNA import proceeds in the absence of any added cytosolic protein fraction, involves at least one protein component on the surface of mitochondria, and requires ATP-dependent step(s) and a membrane potential.

ACKNOWLEDGMENTS

We thank Robert Martin, Ian Small, Anne-Marie Duchêne, and Jacques-Henry Weil for helpful discussions and critical reading of the manuscript and/or of the Ph.D. thesis.

This work was supported by the Centre National de la Recherche Scientifique (UPR2357) and by a fellowship from the French Ministère de l'Enseignement Supérieur et de la Recherche to L.D.

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