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TurboID reveals the proxiomes of Chlamydomonas proteins involved in thylakoid biogenesis and stress response

In Chlamydomonas (Chlamydomonas reinhardtii), the VESICLE-INDUCING PROTEIN IN PLASTIDS 1 and 2 (VIPP1 and VIPP2) play roles in the sensing and coping with membrane stress and in thylakoid membrane biogenesis. To gain more insight into these processes, we aimed to identify proteins interacting with V...

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Autores principales: Kreis, Elena, König, Katharina, Misir, Melissa, Niemeyer, Justus, Sommer, Frederik, Schroda, Michael
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10602608/
https://www.ncbi.nlm.nih.gov/pubmed/37310689
http://dx.doi.org/10.1093/plphys/kiad335
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author Kreis, Elena
König, Katharina
Misir, Melissa
Niemeyer, Justus
Sommer, Frederik
Schroda, Michael
author_facet Kreis, Elena
König, Katharina
Misir, Melissa
Niemeyer, Justus
Sommer, Frederik
Schroda, Michael
author_sort Kreis, Elena
collection PubMed
description In Chlamydomonas (Chlamydomonas reinhardtii), the VESICLE-INDUCING PROTEIN IN PLASTIDS 1 and 2 (VIPP1 and VIPP2) play roles in the sensing and coping with membrane stress and in thylakoid membrane biogenesis. To gain more insight into these processes, we aimed to identify proteins interacting with VIPP1/2 in the chloroplast and chose proximity labeling (PL) for this purpose. We used the transient interaction between the nucleotide exchange factor CHLOROPLAST GRPE HOMOLOG 1 (CGE1) and the stromal HEAT SHOCK PROTEIN 70B (HSP70B) as test system. While PL with APEX2 and BioID proved to be inefficient, TurboID resulted in substantial biotinylation in vivo. TurboID-mediated PL with VIPP1/2 as baits under ambient and H(2)O(2) stress conditions confirmed known interactions of VIPP1 with VIPP2, HSP70B, and the CHLOROPLAST DNAJ HOMOLOG 2 (CDJ2). Proteins identified in the VIPP1/2 proxiomes can be grouped into proteins involved in the biogenesis of thylakoid membrane complexes and the regulation of photosynthetic electron transport, including PROTON GRADIENT REGULATION 5-LIKE 1 (PGRL1). A third group comprises 11 proteins of unknown function whose genes are upregulated under chloroplast stress conditions. We named them VIPP PROXIMITY LABELING (VPL). In reciprocal experiments, we confirmed VIPP1 in the proxiomes of VPL2 and PGRL1. Our results demonstrate the robustness of TurboID-mediated PL for studying protein interaction networks in the chloroplast of Chlamydomonas and pave the way for analyzing functions of VIPPs in thylakoid biogenesis and stress responses.
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spelling pubmed-106026082023-10-27 TurboID reveals the proxiomes of Chlamydomonas proteins involved in thylakoid biogenesis and stress response Kreis, Elena König, Katharina Misir, Melissa Niemeyer, Justus Sommer, Frederik Schroda, Michael Plant Physiol Research Article In Chlamydomonas (Chlamydomonas reinhardtii), the VESICLE-INDUCING PROTEIN IN PLASTIDS 1 and 2 (VIPP1 and VIPP2) play roles in the sensing and coping with membrane stress and in thylakoid membrane biogenesis. To gain more insight into these processes, we aimed to identify proteins interacting with VIPP1/2 in the chloroplast and chose proximity labeling (PL) for this purpose. We used the transient interaction between the nucleotide exchange factor CHLOROPLAST GRPE HOMOLOG 1 (CGE1) and the stromal HEAT SHOCK PROTEIN 70B (HSP70B) as test system. While PL with APEX2 and BioID proved to be inefficient, TurboID resulted in substantial biotinylation in vivo. TurboID-mediated PL with VIPP1/2 as baits under ambient and H(2)O(2) stress conditions confirmed known interactions of VIPP1 with VIPP2, HSP70B, and the CHLOROPLAST DNAJ HOMOLOG 2 (CDJ2). Proteins identified in the VIPP1/2 proxiomes can be grouped into proteins involved in the biogenesis of thylakoid membrane complexes and the regulation of photosynthetic electron transport, including PROTON GRADIENT REGULATION 5-LIKE 1 (PGRL1). A third group comprises 11 proteins of unknown function whose genes are upregulated under chloroplast stress conditions. We named them VIPP PROXIMITY LABELING (VPL). In reciprocal experiments, we confirmed VIPP1 in the proxiomes of VPL2 and PGRL1. Our results demonstrate the robustness of TurboID-mediated PL for studying protein interaction networks in the chloroplast of Chlamydomonas and pave the way for analyzing functions of VIPPs in thylakoid biogenesis and stress responses. Oxford University Press 2023-06-13 /pmc/articles/PMC10602608/ /pubmed/37310689 http://dx.doi.org/10.1093/plphys/kiad335 Text en © The Author(s) 2023. 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 Article
Kreis, Elena
König, Katharina
Misir, Melissa
Niemeyer, Justus
Sommer, Frederik
Schroda, Michael
TurboID reveals the proxiomes of Chlamydomonas proteins involved in thylakoid biogenesis and stress response
title TurboID reveals the proxiomes of Chlamydomonas proteins involved in thylakoid biogenesis and stress response
title_full TurboID reveals the proxiomes of Chlamydomonas proteins involved in thylakoid biogenesis and stress response
title_fullStr TurboID reveals the proxiomes of Chlamydomonas proteins involved in thylakoid biogenesis and stress response
title_full_unstemmed TurboID reveals the proxiomes of Chlamydomonas proteins involved in thylakoid biogenesis and stress response
title_short TurboID reveals the proxiomes of Chlamydomonas proteins involved in thylakoid biogenesis and stress response
title_sort turboid reveals the proxiomes of chlamydomonas proteins involved in thylakoid biogenesis and stress response
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10602608/
https://www.ncbi.nlm.nih.gov/pubmed/37310689
http://dx.doi.org/10.1093/plphys/kiad335
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