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April 10, 2026Protein Science0 citationsOpen Access

Novel insights into the assembly of the yeast translation initiation multifactor complex: The critical role of eIF5

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BFBorja Sáez de la FuenteLVLaura Villamayor‐BelinchónJCJosé Rafael Ciges‐Tomas

Key Points

  • This research aims to understand the assembly of the yeast multifactor complex and the specific role of eIF5 within it.
  • Combined biophysical and biochemical techniques
  • Utilized mass photometry and native mass spectrometry
  • Employed electron microscopy for structural analysis
  • Two copies of eIF5 are crucial for multifactor complex formation
  • One eIF5 molecule interacts with eIF2β and eIF2γ
  • The second eIF5 molecule engages with eIF1 and eIF3c

Abstract

The eukaryotic translation initiation is a biological process in which at least a dozen eukaryotic initiation factors (eIFs) are involved. Specifically, eIF3, eIF1, eIF5, and eIF2 as a ternary complex (eIF2-TC) bound to GTP and methionyl initiator tRNA (Met-tRNAi Met). They interact to form a large complex called the multifactor complex (MFC). This complex binds cooperatively to the ribosomal pre-initiation complex (PIC), promoting the loading of the Met-tRNAi Met into the peptidyl (P) site of the 40S ribosomal subunit. While some interactions between eIFs have been described in the context of the PIC, the interactions within the MFC remain poorly understood. Here, we combine biophysical and biochemical approaches, including mass photometry and native mass spectrometry, with structural biology methods such as electron microscopy, to gain deeper insights into the MFC architecture. Our findings provide novel insights into the critical role of eIF5 during MFC assembly. Notably, two copies of eIF5 are involved in the formation of the MFC. We propose that one eIF5 molecule engages eIF2β and eIF2γ, whereas a second eIF5 molecule interacts with eIF1 together with eIF3c.

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Cite This Study

Fuente et al. (2026) studied this question.

synapsesocial.com/papers/69d893eb6c1944d70ce04e82https://doi.org/10.1002/pro.70550
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