4.8 Article

Evolutionary changes in the Leishmania eIF4F complex involve variations in the eIF4EeIF4G interactions

Journal

NUCLEIC ACIDS RESEARCH
Volume 37, Issue 10, Pages 3243-3253

Publisher

OXFORD UNIV PRESS
DOI: 10.1093/nar/gkp190

Keywords

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Funding

  1. US-Israel Binational Foundation [2007287]
  2. UNICEF/UNDP/World Bank/WHO Special Programme for Research and Training in Tropical Diseases
  3. Israel Ministry of Health [5440]
  4. National Institutes of Health [CA68262, GM47467]
  5. Fonds de la Recherche en Sante du Quebec
  6. Howard Hughes Medical Institute [55005604]
  7. National Science Support Project 2008-2010 [PBZ-MNiSW07/I/2007]
  8. NATIONAL CANCER INSTITUTE [R01CA068262] Funding Source: NIH RePORTER
  9. NATIONAL INSTITUTE OF GENERAL MEDICAL SCIENCES [P01GM047467] Funding Source: NIH RePORTER

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Translation initiation in eukaryotes is mediated by assembly of the eIF4F complex over the m(7)GTP cap structure at the 5-end of mRNAs. This requires an interaction between eIF4E and eIF4G, two eIF4F subunits. The Leishmania orthologs of eIF4E are structurally diverged from their higher eukaryote counterparts, since they have evolved to bind the unique trypanosomatid cap-4 structure. Here, we characterize a key eIF4G candidate from Leishmania parasites (LeishIF4G-3) that contains a conserved MIF4G domain. LeishIF4G-3 was found to coelute with the parasite eIF4F subunits from an m(7)GTP-Sepharose column and to bind directly to LeishIF4E. In higher eukaryotes the eIF4E-eIF4G interaction is based on a conserved peptide signature [Y(X-4)L], where X is any amino acid and is a hydrophobic residue. A parallel eIF4E-binding peptide was identified in LeishIF4G-3 (20-YPGFSLDE-27). However, the binding motif varies extensively: in addition to Y20 and L25, binding strictly requires the presence of F23, whereas the hydrophobic amino acid () is dispensable. The LeishIF4ELeishIF4G-3 interaction was also confirmed by nuclear magnetic resonance (NMR) studies. In view of these diversities, the characterization of the parasite eIF4EeIF4G interaction may not only serve as a novel target for inhibiting Leishmaniasis but also provide important insight for future drug discovery.

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