4.5 Article

The translation initiation factor EIF4E5 from Leishmania: crystal structure and interacting partners

期刊

RNA BIOLOGY
卷 18, 期 12, 页码 2433-2449

出版社

TAYLOR & FRANCIS INC
DOI: 10.1080/15476286.2021.1918919

关键词

Translation initiation; Leishmania; protein interaction; crystal structure

资金

  1. CNPq [401282/2014-7, 442323/2019-0]
  2. Parana State Science Support Foundation [FA 005/2016]
  3. FACEPE [APQ-1662-2.02/15]
  4. Programmes Tranversaux de Recherche - Pasteur Institute [PTR 190-19]

向作者/读者索取更多资源

This study investigated the interacting proteins of Leishmania EIF4E5, revealing its main interaction with EIF4G1 and other proteins. The study also explored the interactions of EIF4E5's C-terminal end and protein partners.
The mRNA cap-binding protein, eIF4E, mediates the recognition of the mRNA 5MODIFIER LETTER PRIME end and, as part of the heterotrimeric eIF4F complex, facilitates the recruitment of the ribosomal subunits to initiate eukaryotic translation. Various regulatory events involving eIF4E and a second eIF4F subunit, eIF4G, are required for proper control of translation initiation. In pathogenic trypanosomatids, six eIF4Es and five eIF4Gs have been described, several forming different eIF4F-like complexes with yet unresolved roles. EIF4E5 is one of the least known of the trypanosomatid eIF4Es and has not been characterized in Leishmania species. Here, we used immunoprecipitation assays, combined with mass-spectrometry, to identify major EIF4E5 interacting proteins in L. infantum. A constitutively expressed, HA-tagged, EIF4E5 co-precipitated mainly with EIF4G1 and binding partners previously described in Trypanosoma brucei, EIF4G1-IP, RBP43 and the 14-3-3 proteins. In contrast, no clear co-precipitation with EIF4G2, also previously reported, was observed. EIF4E5 also co-precipitated with protein kinases, possibly associated with cell-cycle regulation, selected RNA binding proteins and histones. Phosphorylated residues were identified and mapped to the Leishmania-specific C-terminal end. Mutagenesis of the tryptophan residue (W53) postulated to mediate interactions with protein partners or of a neighbouring tryptophan conserved in Leishmania (W45) did not substantially impair the identified interactions. Finally, the crystal structure of Leishmania EIF4E5 evidences remarkable differences in the eIF4G interfacing region, when compared with human eIF4E-1 and with its Trypanosoma orthologue. Mapping of its C-terminal end near the cap-binding site also imply relevant differences in cap-binding function and/or regulation.

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