Cargando…

Spatially Enriched Paralog Rearrangements Argue Functionally Diverse Ribosomes Arise during Cold Acclimation in Arabidopsis

Ribosome biogenesis is essential for plants to successfully acclimate to low temperature. Without dedicated steps supervising the 60S large subunits (LSUs) maturation in the cytosol, e.g., Rei-like (REIL) factors, plants fail to accumulate dry weight and fail to grow at suboptimal low temperatures....

Descripción completa

Detalles Bibliográficos
Autores principales: Martinez-Seidel, Federico, Beine-Golovchuk, Olga, Hsieh, Yin-Chen, Eshraky, Kheloud El, Gorka, Michal, Cheong, Bo-Eng, Jimenez-Posada, Erika V., Walther, Dirk, Skirycz, Aleksandra, Roessner, Ute, Kopka, Joachim, Pereira Firmino, Alexandre Augusto
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8201131/
https://www.ncbi.nlm.nih.gov/pubmed/34200446
http://dx.doi.org/10.3390/ijms22116160
_version_ 1783707746078556160
author Martinez-Seidel, Federico
Beine-Golovchuk, Olga
Hsieh, Yin-Chen
Eshraky, Kheloud El
Gorka, Michal
Cheong, Bo-Eng
Jimenez-Posada, Erika V.
Walther, Dirk
Skirycz, Aleksandra
Roessner, Ute
Kopka, Joachim
Pereira Firmino, Alexandre Augusto
author_facet Martinez-Seidel, Federico
Beine-Golovchuk, Olga
Hsieh, Yin-Chen
Eshraky, Kheloud El
Gorka, Michal
Cheong, Bo-Eng
Jimenez-Posada, Erika V.
Walther, Dirk
Skirycz, Aleksandra
Roessner, Ute
Kopka, Joachim
Pereira Firmino, Alexandre Augusto
author_sort Martinez-Seidel, Federico
collection PubMed
description Ribosome biogenesis is essential for plants to successfully acclimate to low temperature. Without dedicated steps supervising the 60S large subunits (LSUs) maturation in the cytosol, e.g., Rei-like (REIL) factors, plants fail to accumulate dry weight and fail to grow at suboptimal low temperatures. Around REIL, the final 60S cytosolic maturation steps include proofreading and assembly of functional ribosomal centers such as the polypeptide exit tunnel and the P-Stalk, respectively. In consequence, these ribosomal substructures and their assembly, especially during low temperatures, might be changed and provoke the need for dedicated quality controls. To test this, we blocked ribosome maturation during cold acclimation using two independent reil double mutant genotypes and tested changes in their ribosomal proteomes. Additionally, we normalized our mutant datasets using as a blank the cold responsiveness of a wild-type Arabidopsis genotype. This allowed us to neglect any reil-specific effects that may happen due to the presence or absence of the factor during LSU cytosolic maturation, thus allowing us to test for cold-induced changes that happen in the early nucleolar biogenesis. As a result, we report that cold acclimation triggers a reprogramming in the structural ribosomal proteome. The reprogramming alters the abundance of specific RP families and/or paralogs in non-translational LSU and translational polysome fractions, a phenomenon known as substoichiometry. Next, we tested whether the cold-substoichiometry was spatially confined to specific regions of the complex. In terms of RP proteoforms, we report that remodeling of ribosomes after a cold stimulus is significantly constrained to the polypeptide exit tunnel (PET), i.e., REIL factor binding and functional site. In terms of RP transcripts, cold acclimation induces changes in RP families or paralogs that are significantly constrained to the P-Stalk and the ribosomal head. The three modulated substructures represent possible targets of mechanisms that may constrain translation by controlled ribosome heterogeneity. We propose that non-random ribosome heterogeneity controlled by specialized biogenesis mechanisms may contribute to a preferential or ultimately even rigorous selection of transcripts needed for rapid proteome shifts and successful acclimation.
format Online
Article
Text
id pubmed-8201131
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-82011312021-06-15 Spatially Enriched Paralog Rearrangements Argue Functionally Diverse Ribosomes Arise during Cold Acclimation in Arabidopsis Martinez-Seidel, Federico Beine-Golovchuk, Olga Hsieh, Yin-Chen Eshraky, Kheloud El Gorka, Michal Cheong, Bo-Eng Jimenez-Posada, Erika V. Walther, Dirk Skirycz, Aleksandra Roessner, Ute Kopka, Joachim Pereira Firmino, Alexandre Augusto Int J Mol Sci Article Ribosome biogenesis is essential for plants to successfully acclimate to low temperature. Without dedicated steps supervising the 60S large subunits (LSUs) maturation in the cytosol, e.g., Rei-like (REIL) factors, plants fail to accumulate dry weight and fail to grow at suboptimal low temperatures. Around REIL, the final 60S cytosolic maturation steps include proofreading and assembly of functional ribosomal centers such as the polypeptide exit tunnel and the P-Stalk, respectively. In consequence, these ribosomal substructures and their assembly, especially during low temperatures, might be changed and provoke the need for dedicated quality controls. To test this, we blocked ribosome maturation during cold acclimation using two independent reil double mutant genotypes and tested changes in their ribosomal proteomes. Additionally, we normalized our mutant datasets using as a blank the cold responsiveness of a wild-type Arabidopsis genotype. This allowed us to neglect any reil-specific effects that may happen due to the presence or absence of the factor during LSU cytosolic maturation, thus allowing us to test for cold-induced changes that happen in the early nucleolar biogenesis. As a result, we report that cold acclimation triggers a reprogramming in the structural ribosomal proteome. The reprogramming alters the abundance of specific RP families and/or paralogs in non-translational LSU and translational polysome fractions, a phenomenon known as substoichiometry. Next, we tested whether the cold-substoichiometry was spatially confined to specific regions of the complex. In terms of RP proteoforms, we report that remodeling of ribosomes after a cold stimulus is significantly constrained to the polypeptide exit tunnel (PET), i.e., REIL factor binding and functional site. In terms of RP transcripts, cold acclimation induces changes in RP families or paralogs that are significantly constrained to the P-Stalk and the ribosomal head. The three modulated substructures represent possible targets of mechanisms that may constrain translation by controlled ribosome heterogeneity. We propose that non-random ribosome heterogeneity controlled by specialized biogenesis mechanisms may contribute to a preferential or ultimately even rigorous selection of transcripts needed for rapid proteome shifts and successful acclimation. MDPI 2021-06-07 /pmc/articles/PMC8201131/ /pubmed/34200446 http://dx.doi.org/10.3390/ijms22116160 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Martinez-Seidel, Federico
Beine-Golovchuk, Olga
Hsieh, Yin-Chen
Eshraky, Kheloud El
Gorka, Michal
Cheong, Bo-Eng
Jimenez-Posada, Erika V.
Walther, Dirk
Skirycz, Aleksandra
Roessner, Ute
Kopka, Joachim
Pereira Firmino, Alexandre Augusto
Spatially Enriched Paralog Rearrangements Argue Functionally Diverse Ribosomes Arise during Cold Acclimation in Arabidopsis
title Spatially Enriched Paralog Rearrangements Argue Functionally Diverse Ribosomes Arise during Cold Acclimation in Arabidopsis
title_full Spatially Enriched Paralog Rearrangements Argue Functionally Diverse Ribosomes Arise during Cold Acclimation in Arabidopsis
title_fullStr Spatially Enriched Paralog Rearrangements Argue Functionally Diverse Ribosomes Arise during Cold Acclimation in Arabidopsis
title_full_unstemmed Spatially Enriched Paralog Rearrangements Argue Functionally Diverse Ribosomes Arise during Cold Acclimation in Arabidopsis
title_short Spatially Enriched Paralog Rearrangements Argue Functionally Diverse Ribosomes Arise during Cold Acclimation in Arabidopsis
title_sort spatially enriched paralog rearrangements argue functionally diverse ribosomes arise during cold acclimation in arabidopsis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8201131/
https://www.ncbi.nlm.nih.gov/pubmed/34200446
http://dx.doi.org/10.3390/ijms22116160
work_keys_str_mv AT martinezseidelfederico spatiallyenrichedparalogrearrangementsarguefunctionallydiverseribosomesariseduringcoldacclimationinarabidopsis
AT beinegolovchukolga spatiallyenrichedparalogrearrangementsarguefunctionallydiverseribosomesariseduringcoldacclimationinarabidopsis
AT hsiehyinchen spatiallyenrichedparalogrearrangementsarguefunctionallydiverseribosomesariseduringcoldacclimationinarabidopsis
AT eshrakykheloudel spatiallyenrichedparalogrearrangementsarguefunctionallydiverseribosomesariseduringcoldacclimationinarabidopsis
AT gorkamichal spatiallyenrichedparalogrearrangementsarguefunctionallydiverseribosomesariseduringcoldacclimationinarabidopsis
AT cheongboeng spatiallyenrichedparalogrearrangementsarguefunctionallydiverseribosomesariseduringcoldacclimationinarabidopsis
AT jimenezposadaerikav spatiallyenrichedparalogrearrangementsarguefunctionallydiverseribosomesariseduringcoldacclimationinarabidopsis
AT waltherdirk spatiallyenrichedparalogrearrangementsarguefunctionallydiverseribosomesariseduringcoldacclimationinarabidopsis
AT skiryczaleksandra spatiallyenrichedparalogrearrangementsarguefunctionallydiverseribosomesariseduringcoldacclimationinarabidopsis
AT roessnerute spatiallyenrichedparalogrearrangementsarguefunctionallydiverseribosomesariseduringcoldacclimationinarabidopsis
AT kopkajoachim spatiallyenrichedparalogrearrangementsarguefunctionallydiverseribosomesariseduringcoldacclimationinarabidopsis
AT pereirafirminoalexandreaugusto spatiallyenrichedparalogrearrangementsarguefunctionallydiverseribosomesariseduringcoldacclimationinarabidopsis