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Fast and global reorganization of the chloroplast protein biogenesis network during heat acclimation

Photosynthesis is a central determinant of plant biomass production, but its homeostasis is increasingly challenged by heat. Little is known about the sensitive regulatory principles involved in heat acclimation that underly the biogenesis and repair of chloroplast-encoded core subunits of photosynt...

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Autores principales: Trösch, Raphael, Ries, Fabian, Westrich, Lisa Désirée, Gao, Yang, Herkt, Claudia, Hoppstädter, Julia, Heck-Roth, Johannes, Mustas, Matthieu, Scheuring, David, Choquet, Yves, Räschle, Markus, Zoschke, Reimo, Willmund, Felix
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8894945/
https://www.ncbi.nlm.nih.gov/pubmed/34958373
http://dx.doi.org/10.1093/plcell/koab317
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author Trösch, Raphael
Ries, Fabian
Westrich, Lisa Désirée
Gao, Yang
Herkt, Claudia
Hoppstädter, Julia
Heck-Roth, Johannes
Mustas, Matthieu
Scheuring, David
Choquet, Yves
Räschle, Markus
Zoschke, Reimo
Willmund, Felix
author_facet Trösch, Raphael
Ries, Fabian
Westrich, Lisa Désirée
Gao, Yang
Herkt, Claudia
Hoppstädter, Julia
Heck-Roth, Johannes
Mustas, Matthieu
Scheuring, David
Choquet, Yves
Räschle, Markus
Zoschke, Reimo
Willmund, Felix
author_sort Trösch, Raphael
collection PubMed
description Photosynthesis is a central determinant of plant biomass production, but its homeostasis is increasingly challenged by heat. Little is known about the sensitive regulatory principles involved in heat acclimation that underly the biogenesis and repair of chloroplast-encoded core subunits of photosynthetic complexes. Employing time-resolved ribosome and transcript profiling together with selective ribosome proteomics, we systematically deciphered these processes in chloroplasts of Chlamydomonas reinhardtii. We revealed protein biosynthesis and altered translation elongation as central processes for heat acclimation and showed that these principles are conserved between the alga and the flowering plant Nicotiana tabacum. Short-term heat exposure resulted in specific translational repression of chlorophyll a-containing core antenna proteins of photosystems I and II. Furthermore, translocation of ribosome nascent chain complexes to thylakoid membranes was affected, as reflected by the increased accumulation of stromal cpSRP54-bound ribosomes. The successful recovery of synthesizing these proteins under prolonged acclimation of nonlethal heat conditions was associated with specific changes of the co-translational protein interaction network, including increased ribosome association of chlorophyll biogenesis enzymes and acclimation factors responsible for complex assembly. We hypothesize that co-translational cofactor binding and targeting might be bottlenecks under heat but become optimized upon heat acclimation to sustain correct co-translational protein complex assembly.
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spelling pubmed-88949452022-03-07 Fast and global reorganization of the chloroplast protein biogenesis network during heat acclimation Trösch, Raphael Ries, Fabian Westrich, Lisa Désirée Gao, Yang Herkt, Claudia Hoppstädter, Julia Heck-Roth, Johannes Mustas, Matthieu Scheuring, David Choquet, Yves Räschle, Markus Zoschke, Reimo Willmund, Felix Plant Cell Research Articles Photosynthesis is a central determinant of plant biomass production, but its homeostasis is increasingly challenged by heat. Little is known about the sensitive regulatory principles involved in heat acclimation that underly the biogenesis and repair of chloroplast-encoded core subunits of photosynthetic complexes. Employing time-resolved ribosome and transcript profiling together with selective ribosome proteomics, we systematically deciphered these processes in chloroplasts of Chlamydomonas reinhardtii. We revealed protein biosynthesis and altered translation elongation as central processes for heat acclimation and showed that these principles are conserved between the alga and the flowering plant Nicotiana tabacum. Short-term heat exposure resulted in specific translational repression of chlorophyll a-containing core antenna proteins of photosystems I and II. Furthermore, translocation of ribosome nascent chain complexes to thylakoid membranes was affected, as reflected by the increased accumulation of stromal cpSRP54-bound ribosomes. The successful recovery of synthesizing these proteins under prolonged acclimation of nonlethal heat conditions was associated with specific changes of the co-translational protein interaction network, including increased ribosome association of chlorophyll biogenesis enzymes and acclimation factors responsible for complex assembly. We hypothesize that co-translational cofactor binding and targeting might be bottlenecks under heat but become optimized upon heat acclimation to sustain correct co-translational protein complex assembly. Oxford University Press 2021-12-27 /pmc/articles/PMC8894945/ /pubmed/34958373 http://dx.doi.org/10.1093/plcell/koab317 Text en © The Author(s) 2021. Published by Oxford University Press on behalf of American Society of Plant Biologists. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Trösch, Raphael
Ries, Fabian
Westrich, Lisa Désirée
Gao, Yang
Herkt, Claudia
Hoppstädter, Julia
Heck-Roth, Johannes
Mustas, Matthieu
Scheuring, David
Choquet, Yves
Räschle, Markus
Zoschke, Reimo
Willmund, Felix
Fast and global reorganization of the chloroplast protein biogenesis network during heat acclimation
title Fast and global reorganization of the chloroplast protein biogenesis network during heat acclimation
title_full Fast and global reorganization of the chloroplast protein biogenesis network during heat acclimation
title_fullStr Fast and global reorganization of the chloroplast protein biogenesis network during heat acclimation
title_full_unstemmed Fast and global reorganization of the chloroplast protein biogenesis network during heat acclimation
title_short Fast and global reorganization of the chloroplast protein biogenesis network during heat acclimation
title_sort fast and global reorganization of the chloroplast protein biogenesis network during heat acclimation
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8894945/
https://www.ncbi.nlm.nih.gov/pubmed/34958373
http://dx.doi.org/10.1093/plcell/koab317
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