4.8 Article

Structures of the tRNA export factor in the nuclear and cytosolic states

Journal

NATURE
Volume 461, Issue 7260, Pages 60-U60

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/nature08394

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Funding

  1. Max Planck Gesellschaft
  2. European Molecular Biology Laboratory (EMBL)
  3. Sonderforschungsbereich SFB646
  4. Deutsche Forschungsgemeinschaft (DFG)
  5. EU [LSHG-CT-2005-512028]

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Transfer RNAs are among the most ubiquitous molecules in cells, central to decoding information from messenger RNAs on translating ribosomes. In eukaryotic cells, tRNAs are actively transported from their site of synthesis in the nucleus to their site of function in the cytosol. This is mediated by a dedicated nucleo-cytoplasmic transport factor of the karyopherin-beta family (Xpot, also known as Los1 in Saccharomyces cerevisiae). Here we report the 3.2 angstrom resolution structure of Schizosaccharomyces pombe Xpot in complex with tRNA and RanGTP, and the 3.1 angstrom structure of unbound Xpot, revealing both nuclear and cytosolic snapshots of this transport factor. Xpot undergoes a large conformational change on binding cargo, wrapping around the tRNA and, in particular, binding to the tRNA 59 and 39 ends. The binding mode explains how Xpot can recognize all mature tRNAs in the cell and yet distinguish them from those that have not been properly processed, thus coupling tRNA export to quality control.

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