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MDF is a conserved splicing factor and modulates cell division and stress response in Arabidopsis

Authors :
German Research Foundation
University of Hamburg
Ministerio de Ciencia e Innovación (España)
Academy of Sciences of the Czech Republic
German Academic Exchange Service
Federal Ministry of Education and Research (Germany)
De Luxán-Hernández, Cloe [0000-0002-4081-8654]
Tranque, Eduardo [0000-0002-6372-9574]
Binarova, Pavla [0000-0002-7203-2250]
Salinas, Julio [0000-0003-2020-0950]
Weingartner, Magdalena [0000-0003-0962-4728]
De Luxán-Hernández, Cloe
Lohmann, Julia
Tranque, Eduardo
Chumova, Jana
Binarova, Pavla
Salinas, Julio
Weingartner, Magdalena
German Research Foundation
University of Hamburg
Ministerio de Ciencia e Innovación (España)
Academy of Sciences of the Czech Republic
German Academic Exchange Service
Federal Ministry of Education and Research (Germany)
De Luxán-Hernández, Cloe [0000-0002-4081-8654]
Tranque, Eduardo [0000-0002-6372-9574]
Binarova, Pavla [0000-0002-7203-2250]
Salinas, Julio [0000-0003-2020-0950]
Weingartner, Magdalena [0000-0003-0962-4728]
De Luxán-Hernández, Cloe
Lohmann, Julia
Tranque, Eduardo
Chumova, Jana
Binarova, Pavla
Salinas, Julio
Weingartner, Magdalena
Publication Year :
2022

Abstract

The coordination of cell division with stress response is essential for maintaining genome stability in plant meristems. Proteins involved in pre-mRNA splicing are important for these processes in animal and human cells. Based on its homology to the splicing factor SART1, which is implicated in the control of cell division and genome stability in human cells, we analyzed if MDF has similar functions in plants. We found that MDF associates with U4/U6.U5 tri-snRNP proteins and is essential for correct splicing of 2,037 transcripts. Loss of MDF function leads to cell division defects and cell death in meristems and was associated with up-regulation of stress-induced genes and down-regulation of mitotic regulators. In addition, the mdf-1 mutant is hypersensitive to DNA damage treatment supporting its role in coordinating stress response with cell division. Our analysis of a dephosphomutant of MDF suggested how its protein activity might be controlled. Our work uncovers the conserved function of a plant splicing factor and provides novel insight into the interplay of pre-mRNA processing and genome stability in plants.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1356201639
Document Type :
Electronic Resource