Abstract

Eukaryotic initiation factor (eIF) 4B interacts with several components of the initiation pathway and is targeted for cleavage during apoptosis. In a cell-free system, cleavage of eIF4B by caspase-3 coincides with a general inhibition of protein synthetic activity. Affinity chromatography demonstrates that mammalian eIF4B interacts with the poly(A)-binding protein and that a region consisting of the N-terminal 80 amino acids of eIF4B is both necessary and sufficient for such binding. This interaction is lost when eIF4B is cleaved by caspase-3, which removes the N-terminal 45 amino acids. Similarly, the association of eIF4B with the poly(A)-binding protein in vivo is reduced when cells are induced to undergo apoptosis. Cleavage of the poly(A)-binding protein itself, using human rhinovirus 3C protease, also eliminates the interaction with eIF4B. Thus, disruption of the association between mammalian eIF4B and the poly(A)-binding protein can occur during both apoptosis and picornaviral infection and is likely to contribute to the inhibition of translation observed under these conditions.

Highlights

  • Eukaryotic initiation factor 4B interacts with several components of the initiation pathway and is targeted for cleavage during apoptosis

  • The direct interaction between mammalian eIF4B and poly(A)-binding protein (PABP), in conjunction with the binding of eIF4G to PABP, may facilitate the functional association of the 5Ј and 3Ј ends of mRNA [1,2,3, 55,56,57]

  • The association of eIF4B with PABP increases the efficiency of reinitiation of protein synthesis [58], a process that is enhanced by the interaction between eIF4G and PABP [17, 43]

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Summary

Introduction

Eukaryotic initiation factor (eIF) 4B interacts with several components of the initiation pathway and is targeted for cleavage during apoptosis. Cleavage of the poly(A)binding protein itself, using human rhinovirus 3C protease, eliminates the interaction with eIF4B.

Results
Conclusion
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