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Molecular basis for disassembly of an importin:ribosomal protein complex by the escortin Tsr2.


ABSTRACT: Disordered extensions at the termini and short internal insertions distinguish eukaryotic ribosomal proteins (r-proteins) from their anucleated archaeal counterparts. Here, we report an NMR structure of such a eukaryotic-specific segment (ESS) in the r-protein eS26 in complex with the escortin Tsr2. The structure reveals how ESS attracts Tsr2 specifically to importin:eS26 complexes entering the nucleus in order to trigger non-canonical RanGTP-independent disassembly. Tsr2 then sequesters the released eS26 and prevents rebinding to the importin, providing an alternative allosteric mechanism to terminate the process of nuclear import. Notably, a Diamond-Blackfan anemia-associated Tsr2 mutant protein is impaired in binding to ESS, unveiling a critical role for this interaction in human hematopoiesis. We propose that eS26-ESS and Tsr2 are components of a nuclear sorting system that co-evolved with the emergence of the nucleocytoplasmic barrier and transport carriers.

SUBMITTER: Schutz S 

PROVIDER: S-EPMC6131548 | biostudies-literature | 2018 Sep

REPOSITORIES: biostudies-literature

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Molecular basis for disassembly of an importin:ribosomal protein complex by the escortin Tsr2.

Schütz Sabina S   Michel Erich E   Damberger Fred F FF   Oplová Michaela M   Peña Cohue C   Leitner Alexander A   Aebersold Ruedi R   Allain Frederic H-T FH   Panse Vikram Govind VG  

Nature communications 20180910 1


Disordered extensions at the termini and short internal insertions distinguish eukaryotic ribosomal proteins (r-proteins) from their anucleated archaeal counterparts. Here, we report an NMR structure of such a eukaryotic-specific segment (ESS) in the r-protein eS26 in complex with the escortin Tsr2. The structure reveals how ESS attracts Tsr2 specifically to importin:eS26 complexes entering the nucleus in order to trigger non-canonical RanGTP-independent disassembly. Tsr2 then sequesters the rel  ...[more]

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