Human-like eukaryotic translation initiation factor 3 from Neurospora crassa.

Eukaryotic translation initiation factor 3 (eIF3) is a key regulator of translation initiation, but its in vivo assembly and molecular functions remain unclear. Here we show that eIF3 from Neurospora crassa is structurally and compositionally similar to human eIF3. N. crassa eIF3 forms a stable 12-s...

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Main Authors: M Duane Smith, Yu Gu, Jordi Querol-Audí, Jacob M Vogan, Adam Nitido, Jamie H D Cate
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3826745?pdf=render
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spelling doaj-844b0690daac4c9da9b30d343335c52f2020-11-25T02:33:36ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-01811e7871510.1371/journal.pone.0078715Human-like eukaryotic translation initiation factor 3 from Neurospora crassa.M Duane SmithYu GuJordi Querol-AudíJacob M VoganAdam NitidoJamie H D CateEukaryotic translation initiation factor 3 (eIF3) is a key regulator of translation initiation, but its in vivo assembly and molecular functions remain unclear. Here we show that eIF3 from Neurospora crassa is structurally and compositionally similar to human eIF3. N. crassa eIF3 forms a stable 12-subunit complex linked genetically and biochemically to the 13(th) subunit, eIF3j, which in humans modulates mRNA start codon selection. Based on N. crassa genetic analysis, most subunits in eIF3 are essential. Subunits that can be deleted (e, h, k and l) map to the right side of the eIF3 complex, suggesting that they may coordinately regulate eIF3 function. Consistent with this model, subunits eIF3k and eIF3l are incorporated into the eIF3 complex as a pair, and their insertion depends on the presence of subunit eIF3h, a key regulator of vertebrate development. Comparisons to other eIF3 complexes suggest that eIF3 assembles around an eIF3a and eIF3c dimer, which may explain the coordinated regulation of human eIF3 levels. Taken together, these results show that Neurospora crassa eIF3 provides a tractable system for probing the structure and function of human-like eIF3 in the context of living cells.http://europepmc.org/articles/PMC3826745?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author M Duane Smith
Yu Gu
Jordi Querol-Audí
Jacob M Vogan
Adam Nitido
Jamie H D Cate
spellingShingle M Duane Smith
Yu Gu
Jordi Querol-Audí
Jacob M Vogan
Adam Nitido
Jamie H D Cate
Human-like eukaryotic translation initiation factor 3 from Neurospora crassa.
PLoS ONE
author_facet M Duane Smith
Yu Gu
Jordi Querol-Audí
Jacob M Vogan
Adam Nitido
Jamie H D Cate
author_sort M Duane Smith
title Human-like eukaryotic translation initiation factor 3 from Neurospora crassa.
title_short Human-like eukaryotic translation initiation factor 3 from Neurospora crassa.
title_full Human-like eukaryotic translation initiation factor 3 from Neurospora crassa.
title_fullStr Human-like eukaryotic translation initiation factor 3 from Neurospora crassa.
title_full_unstemmed Human-like eukaryotic translation initiation factor 3 from Neurospora crassa.
title_sort human-like eukaryotic translation initiation factor 3 from neurospora crassa.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description Eukaryotic translation initiation factor 3 (eIF3) is a key regulator of translation initiation, but its in vivo assembly and molecular functions remain unclear. Here we show that eIF3 from Neurospora crassa is structurally and compositionally similar to human eIF3. N. crassa eIF3 forms a stable 12-subunit complex linked genetically and biochemically to the 13(th) subunit, eIF3j, which in humans modulates mRNA start codon selection. Based on N. crassa genetic analysis, most subunits in eIF3 are essential. Subunits that can be deleted (e, h, k and l) map to the right side of the eIF3 complex, suggesting that they may coordinately regulate eIF3 function. Consistent with this model, subunits eIF3k and eIF3l are incorporated into the eIF3 complex as a pair, and their insertion depends on the presence of subunit eIF3h, a key regulator of vertebrate development. Comparisons to other eIF3 complexes suggest that eIF3 assembles around an eIF3a and eIF3c dimer, which may explain the coordinated regulation of human eIF3 levels. Taken together, these results show that Neurospora crassa eIF3 provides a tractable system for probing the structure and function of human-like eIF3 in the context of living cells.
url http://europepmc.org/articles/PMC3826745?pdf=render
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