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1.
Curr Opin Struct Biol ; 77: 102484, 2022 Dec.
Article in English | MEDLINE | ID: mdl-36323134

ABSTRACT

All steps of cryogenic electron-microscopy (cryo-EM) workflows have rapidly evolved over the last decade. Advances in both single-particle analysis (SPA) cryo-EM and cryo-electron tomography (cryo-ET) have facilitated the determination of high-resolution biomolecular structures that are not tractable with other methods. However, challenges remain. For SPA, these include improved resolution in an additional dimension: time. For cryo-ET, these include accessing difficult-to-image areas of a cell and finding rare molecules. Finally, there is a need for automated and faster workflows, as many projects are limited by throughput. Here, we review current developments in SPA cryo-EM and cryo-ET that push these boundaries. Collectively, these advances are poised to propel our spatial and temporal understanding of macromolecular processes.


Subject(s)
Electron Microscope Tomography , Single Molecule Imaging , Cryoelectron Microscopy/methods , Electron Microscope Tomography/methods , Macromolecular Substances/chemistry
2.
iScience ; 24(12): 103454, 2021 Dec 17.
Article in English | MEDLINE | ID: mdl-34877508

ABSTRACT

eIF2B is the guanine nucleotide exchange factor (GEF) required for cytoplasmic protein synthesis initiation in eukaryotes and its regulation within the integrated stress response (ISR). It activates its partner factor eIF2, thereby promoting translation initiation. Here we provide evidence through biochemical and genetic approaches that eIF2B can bind directly to GTP and this can enhance its rate of GEF activity toward eIF2-GDP in vitro. GTP binds to a subcomplex of the eIF2Bγ and ε subunits. The eIF2Bγ amino-terminal domain shares structural homology with hexose sugar phosphate pyrophosphorylase enzymes that bind specific nucleotides. A K66R mutation in eIF2Bγ is especially sensitive to guanine or GTP in a range of functional assays. Taken together, our data suggest eIF2Bγ may act as a sensor of purine nucleotide availability and thus modulate eIF2B activity and protein synthesis in response to fluctuations in cellular nucleotide levels.

3.
Nat Commun ; 10(1): 2136, 2019 05 13.
Article in English | MEDLINE | ID: mdl-31086188

ABSTRACT

Protein synthesis in eukaryotes is controlled by signals and stresses via a common pathway, called the integrated stress response (ISR). Phosphorylation of the translation initiation factor eIF2 alpha at a conserved serine residue mediates translational control at the ISR core. To provide insight into the mechanism of translational control we have determined the structures of eIF2 both in phosphorylated and unphosphorylated forms bound with its nucleotide exchange factor eIF2B by electron cryomicroscopy. The structures reveal that eIF2 undergoes large rearrangements to promote binding of eIF2α to the regulatory core of eIF2B comprised of the eIF2B alpha, beta and delta subunits. Only minor differences are observed between eIF2 and eIF2αP binding to eIF2B, suggesting that the higher affinity of eIF2αP for eIF2B drives translational control. We present a model for controlled nucleotide exchange and initiator tRNA binding to the eIF2/eIF2B complex.


Subject(s)
Eukaryotic Initiation Factor-2B/ultrastructure , Eukaryotic Initiation Factor-2/ultrastructure , RNA, Transfer, Met/ultrastructure , Saccharomyces cerevisiae Proteins/ultrastructure , Computer Simulation , Cryoelectron Microscopy , Eukaryotic Initiation Factor-2/metabolism , Eukaryotic Initiation Factor-2B/metabolism , Models, Molecular , Nucleotides/metabolism , Phosphorylation/physiology , Protein Binding/physiology , Protein Biosynthesis/physiology , RNA, Transfer, Met/metabolism , Saccharomyces cerevisiae Proteins/metabolism , eIF-2 Kinase/metabolism
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