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Functional link between ribosome formation and biogenesis of iron-sulfur proteins.


ABSTRACT: In genetic screens for ribosomal export mutants, we identified CFD1, NBP35 and NAR1 as factors involved in ribosome biogenesis. Notably, these components were recently reported to function in extramitochondrial iron-sulfur (Fe-S) cluster biosynthesis. In particular, Nar1 was implicated to generate the Fe-S clusters within Rli1, a potential substrate protein of unknown function. We tested whether the Fe-S protein Rli1 functions in ribosome formation. We report that rli1 mutants are impaired in pre-rRNA processing and defective in the export of both ribosomal subunits. In addition, Rli1p is associated with both pre-40S particles and mature 40S subunits, and with the eIF3 translation initiation factor complex. Our data reveal an unexpected link between ribosome biogenesis and the biosynthetic pathway of cytoplasmic Fe-S proteins.

SUBMITTER: Yarunin A 

PROVIDER: S-EPMC548649 | biostudies-literature | 2005 Feb

REPOSITORIES: biostudies-literature

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Functional link between ribosome formation and biogenesis of iron-sulfur proteins.

Yarunin Alexander A   Panse Vikram Govind VG   Petfalski Elisabeth E   Dez Christophe C   Tollervey David D   Hurt Eduard C EC  

The EMBO journal 20050120 3


In genetic screens for ribosomal export mutants, we identified CFD1, NBP35 and NAR1 as factors involved in ribosome biogenesis. Notably, these components were recently reported to function in extramitochondrial iron-sulfur (Fe-S) cluster biosynthesis. In particular, Nar1 was implicated to generate the Fe-S clusters within Rli1, a potential substrate protein of unknown function. We tested whether the Fe-S protein Rli1 functions in ribosome formation. We report that rli1 mutants are impaired in pr  ...[more]

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