Structure and function of yeast Lso2 and human CCDC124 bound to hibernating ribosomes.

Cells adjust to nutrient deprivation by reversible translational shutdown. This is accompanied by maintaining inactive ribosomes in a hibernation state, in which they are bound by proteins with inhibitory and protective functions. In eukaryotes, such a function was attributed to suppressor of target...

Full description

Bibliographic Details
Main Authors: Jennifer N Wells, Robert Buschauer, Timur Mackens-Kiani, Katharina Best, Hanna Kratzat, Otto Berninghausen, Thomas Becker, Wendy Gilbert, Jingdong Cheng, Roland Beckmann
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2020-07-01
Series:PLoS Biology
Online Access:https://doi.org/10.1371/journal.pbio.3000780
id doaj-c96bea8dd8cf41d0a139e5faf0eef849
record_format Article
spelling doaj-c96bea8dd8cf41d0a139e5faf0eef8492021-07-02T16:25:35ZengPublic Library of Science (PLoS)PLoS Biology1544-91731545-78852020-07-01187e300078010.1371/journal.pbio.3000780Structure and function of yeast Lso2 and human CCDC124 bound to hibernating ribosomes.Jennifer N WellsRobert BuschauerTimur Mackens-KianiKatharina BestHanna KratzatOtto BerninghausenThomas BeckerWendy GilbertJingdong ChengRoland BeckmannCells adjust to nutrient deprivation by reversible translational shutdown. This is accompanied by maintaining inactive ribosomes in a hibernation state, in which they are bound by proteins with inhibitory and protective functions. In eukaryotes, such a function was attributed to suppressor of target of Myb protein 1 (Stm1; SERPINE1 mRNA-binding protein 1 [SERBP1] in mammals), and recently, late-annotated short open reading frame 2 (Lso2; coiled-coil domain containing short open reading frame 124 [CCDC124] in mammals) was found to be involved in translational recovery after starvation from stationary phase. Here, we present cryo-electron microscopy (cryo-EM) structures of translationally inactive yeast and human ribosomes. We found Lso2/CCDC124 accumulating on idle ribosomes in the nonrotated state, in contrast to Stm1/SERBP1-bound ribosomes, which display a rotated state. Lso2/CCDC124 bridges the decoding sites of the small with the GTPase activating center (GAC) of the large subunit. This position allows accommodation of the duplication of multilocus region 34 protein (Dom34)-dependent ribosome recycling system, which splits Lso2-containing, but not Stm1-containing, ribosomes. We propose a model in which Lso2 facilitates rapid translation reactivation by stabilizing the recycling-competent state of inactive ribosomes.https://doi.org/10.1371/journal.pbio.3000780
collection DOAJ
language English
format Article
sources DOAJ
author Jennifer N Wells
Robert Buschauer
Timur Mackens-Kiani
Katharina Best
Hanna Kratzat
Otto Berninghausen
Thomas Becker
Wendy Gilbert
Jingdong Cheng
Roland Beckmann
spellingShingle Jennifer N Wells
Robert Buschauer
Timur Mackens-Kiani
Katharina Best
Hanna Kratzat
Otto Berninghausen
Thomas Becker
Wendy Gilbert
Jingdong Cheng
Roland Beckmann
Structure and function of yeast Lso2 and human CCDC124 bound to hibernating ribosomes.
PLoS Biology
author_facet Jennifer N Wells
Robert Buschauer
Timur Mackens-Kiani
Katharina Best
Hanna Kratzat
Otto Berninghausen
Thomas Becker
Wendy Gilbert
Jingdong Cheng
Roland Beckmann
author_sort Jennifer N Wells
title Structure and function of yeast Lso2 and human CCDC124 bound to hibernating ribosomes.
title_short Structure and function of yeast Lso2 and human CCDC124 bound to hibernating ribosomes.
title_full Structure and function of yeast Lso2 and human CCDC124 bound to hibernating ribosomes.
title_fullStr Structure and function of yeast Lso2 and human CCDC124 bound to hibernating ribosomes.
title_full_unstemmed Structure and function of yeast Lso2 and human CCDC124 bound to hibernating ribosomes.
title_sort structure and function of yeast lso2 and human ccdc124 bound to hibernating ribosomes.
publisher Public Library of Science (PLoS)
series PLoS Biology
issn 1544-9173
1545-7885
publishDate 2020-07-01
description Cells adjust to nutrient deprivation by reversible translational shutdown. This is accompanied by maintaining inactive ribosomes in a hibernation state, in which they are bound by proteins with inhibitory and protective functions. In eukaryotes, such a function was attributed to suppressor of target of Myb protein 1 (Stm1; SERPINE1 mRNA-binding protein 1 [SERBP1] in mammals), and recently, late-annotated short open reading frame 2 (Lso2; coiled-coil domain containing short open reading frame 124 [CCDC124] in mammals) was found to be involved in translational recovery after starvation from stationary phase. Here, we present cryo-electron microscopy (cryo-EM) structures of translationally inactive yeast and human ribosomes. We found Lso2/CCDC124 accumulating on idle ribosomes in the nonrotated state, in contrast to Stm1/SERBP1-bound ribosomes, which display a rotated state. Lso2/CCDC124 bridges the decoding sites of the small with the GTPase activating center (GAC) of the large subunit. This position allows accommodation of the duplication of multilocus region 34 protein (Dom34)-dependent ribosome recycling system, which splits Lso2-containing, but not Stm1-containing, ribosomes. We propose a model in which Lso2 facilitates rapid translation reactivation by stabilizing the recycling-competent state of inactive ribosomes.
url https://doi.org/10.1371/journal.pbio.3000780
work_keys_str_mv AT jennifernwells structureandfunctionofyeastlso2andhumanccdc124boundtohibernatingribosomes
AT robertbuschauer structureandfunctionofyeastlso2andhumanccdc124boundtohibernatingribosomes
AT timurmackenskiani structureandfunctionofyeastlso2andhumanccdc124boundtohibernatingribosomes
AT katharinabest structureandfunctionofyeastlso2andhumanccdc124boundtohibernatingribosomes
AT hannakratzat structureandfunctionofyeastlso2andhumanccdc124boundtohibernatingribosomes
AT ottoberninghausen structureandfunctionofyeastlso2andhumanccdc124boundtohibernatingribosomes
AT thomasbecker structureandfunctionofyeastlso2andhumanccdc124boundtohibernatingribosomes
AT wendygilbert structureandfunctionofyeastlso2andhumanccdc124boundtohibernatingribosomes
AT jingdongcheng structureandfunctionofyeastlso2andhumanccdc124boundtohibernatingribosomes
AT rolandbeckmann structureandfunctionofyeastlso2andhumanccdc124boundtohibernatingribosomes
_version_ 1721326760654536704