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PPR14 Interacts With PPR-SMR1 and CRM Protein Zm-mCSF1 to Facilitate Mitochondrial Intron Splicing in Maize

In plants, splicing of organellar group II introns involves numerous nucleus-encoded trans-factors. But, how these trans-factors function and interact is not well understood. Here we report the function of a pentatricopeptide repeat (PPR) protein PPR14 and its physical relationship with other splici...

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Autores principales: Wang, Hong-Chun, Chen, Zongliang, Yang, Yan-Zhuo, Sun, Feng, Ding, Shuo, Li, Xiu-Lan, Xu, Chunhui, Tan, Bao-Cai
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7304344/
https://www.ncbi.nlm.nih.gov/pubmed/32595685
http://dx.doi.org/10.3389/fpls.2020.00814
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author Wang, Hong-Chun
Chen, Zongliang
Yang, Yan-Zhuo
Sun, Feng
Ding, Shuo
Li, Xiu-Lan
Xu, Chunhui
Tan, Bao-Cai
author_facet Wang, Hong-Chun
Chen, Zongliang
Yang, Yan-Zhuo
Sun, Feng
Ding, Shuo
Li, Xiu-Lan
Xu, Chunhui
Tan, Bao-Cai
author_sort Wang, Hong-Chun
collection PubMed
description In plants, splicing of organellar group II introns involves numerous nucleus-encoded trans-factors. But, how these trans-factors function and interact is not well understood. Here we report the function of a pentatricopeptide repeat (PPR) protein PPR14 and its physical relationship with other splicing factors in mitochondria. Null mutations of PPR14 severely arrest the embryo and endosperm development, causing an empty pericarp phenotype. PPR14 is required for the splicing of NADH dehydrogenase 2 (nad2) intron 3 and nad7 introns 1 and 2 in mitochondria. The absence of nad2 and nad7 transcripts leads to disruption of the mitochondrial complex I assembly and abolishes its NADH dehydrogenase activity. This is accompanied with increased levels of other mitochondrial complexes and elevated expression of the alternative oxidase proteins. As the function of PPR14 overlaps with PPR-SMR1 and the CRM-domain containing protein Zm-mCSF1, we tested their interactions. Protein-protein interaction analysis indicated that PPR14 interacts with PPR-SMR1 and Zm-mCSF1, suggesting that these three proteins may form a complex. As PPR proteins and CRM-domain containing proteins have many members in mitochondria and chloroplasts, we propose that organellar group II intron splicing is probably mediated by a dynamic complex that includes different PPR and CRM proteins in plants.
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spelling pubmed-73043442020-06-26 PPR14 Interacts With PPR-SMR1 and CRM Protein Zm-mCSF1 to Facilitate Mitochondrial Intron Splicing in Maize Wang, Hong-Chun Chen, Zongliang Yang, Yan-Zhuo Sun, Feng Ding, Shuo Li, Xiu-Lan Xu, Chunhui Tan, Bao-Cai Front Plant Sci Plant Science In plants, splicing of organellar group II introns involves numerous nucleus-encoded trans-factors. But, how these trans-factors function and interact is not well understood. Here we report the function of a pentatricopeptide repeat (PPR) protein PPR14 and its physical relationship with other splicing factors in mitochondria. Null mutations of PPR14 severely arrest the embryo and endosperm development, causing an empty pericarp phenotype. PPR14 is required for the splicing of NADH dehydrogenase 2 (nad2) intron 3 and nad7 introns 1 and 2 in mitochondria. The absence of nad2 and nad7 transcripts leads to disruption of the mitochondrial complex I assembly and abolishes its NADH dehydrogenase activity. This is accompanied with increased levels of other mitochondrial complexes and elevated expression of the alternative oxidase proteins. As the function of PPR14 overlaps with PPR-SMR1 and the CRM-domain containing protein Zm-mCSF1, we tested their interactions. Protein-protein interaction analysis indicated that PPR14 interacts with PPR-SMR1 and Zm-mCSF1, suggesting that these three proteins may form a complex. As PPR proteins and CRM-domain containing proteins have many members in mitochondria and chloroplasts, we propose that organellar group II intron splicing is probably mediated by a dynamic complex that includes different PPR and CRM proteins in plants. Frontiers Media S.A. 2020-06-12 /pmc/articles/PMC7304344/ /pubmed/32595685 http://dx.doi.org/10.3389/fpls.2020.00814 Text en Copyright © 2020 Wang, Chen, Yang, Sun, Ding, Li, Xu and Tan. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Wang, Hong-Chun
Chen, Zongliang
Yang, Yan-Zhuo
Sun, Feng
Ding, Shuo
Li, Xiu-Lan
Xu, Chunhui
Tan, Bao-Cai
PPR14 Interacts With PPR-SMR1 and CRM Protein Zm-mCSF1 to Facilitate Mitochondrial Intron Splicing in Maize
title PPR14 Interacts With PPR-SMR1 and CRM Protein Zm-mCSF1 to Facilitate Mitochondrial Intron Splicing in Maize
title_full PPR14 Interacts With PPR-SMR1 and CRM Protein Zm-mCSF1 to Facilitate Mitochondrial Intron Splicing in Maize
title_fullStr PPR14 Interacts With PPR-SMR1 and CRM Protein Zm-mCSF1 to Facilitate Mitochondrial Intron Splicing in Maize
title_full_unstemmed PPR14 Interacts With PPR-SMR1 and CRM Protein Zm-mCSF1 to Facilitate Mitochondrial Intron Splicing in Maize
title_short PPR14 Interacts With PPR-SMR1 and CRM Protein Zm-mCSF1 to Facilitate Mitochondrial Intron Splicing in Maize
title_sort ppr14 interacts with ppr-smr1 and crm protein zm-mcsf1 to facilitate mitochondrial intron splicing in maize
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7304344/
https://www.ncbi.nlm.nih.gov/pubmed/32595685
http://dx.doi.org/10.3389/fpls.2020.00814
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