학술논문

Assembly of eIF3 Mediated by Mutually Dependent Subunit Insertion
Document Type
article
Source
Structure. 24(6)
Subject
Biochemistry and Cell Biology
Biological Sciences
Underpinning research
1.1 Normal biological development and functioning
Generic health relevance
Eukaryotic Initiation Factor-3
Fungal Proteins
Gene Expression Regulation
Humans
Models
Molecular
Neurospora crassa
Protein Binding
Protein Domains
Protein Multimerization
Protein Structure
Secondary
Chemical Sciences
Information and Computing Sciences
Biophysics
Biological sciences
Chemical sciences
Language
Abstract
Eukaryotic initiation factor 3 (eIF3), an essential multi-protein complex involved in translation initiation, is composed of 12 tightly associated subunits in humans. While the overall structure of eIF3 is known, the mechanism of its assembly and structural consequences of dysregulation of eIF3 subunit expression seen in many cancers is largely unknown. Here we show that subunits in eIF3 assemble into eIF3 in an interdependent manner. Assembly of eIF3 is governed primarily by formation of a helical bundle, composed of helices extending C-terminally from PCI-MPN domains in eight subunits. We propose that, while the minimal subcomplex of human-like eIF3 functional for translation initiation in cells consists of subunits a, b, c, f, g, i, and m, numerous other eIF3 subcomplexes exist under circumstances of subunit over- or underexpression. Thus, eIF3 subcomplexes formed or "released" due to dysregulated subunit expression may be determining factors contributing to eIF3-related cancers.