Cargando…

The rice blast fungus SR protein 1 regulates alternative splicing with unique mechanisms

Serine/arginine-rich (SR) proteins are well known as splicing factors in humans, model animals and plants. However, they are largely unknown in regulating pre-mRNA splicing of filamentous fungi. Here we report that the SR protein MoSrp1 enhances and suppresses alternative splicing in a model fungal...

Descripción completa

Detalles Bibliográficos
Autores principales: Shi, Wei, Yang, Jun, Chen, Deng, Yin, Changfa, Zhang, Huixia, Xu, Xiaozhou, Pan, Xiao, Wang, Ruijin, Fei, Liwang, Li, Mengfei, Qi, Linlu, Bhadauria, Vijai, Liu, Junfeng, Peng, You-Liang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9767378/
https://www.ncbi.nlm.nih.gov/pubmed/36480554
http://dx.doi.org/10.1371/journal.ppat.1011036
_version_ 1784853954164686848
author Shi, Wei
Yang, Jun
Chen, Deng
Yin, Changfa
Zhang, Huixia
Xu, Xiaozhou
Pan, Xiao
Wang, Ruijin
Fei, Liwang
Li, Mengfei
Qi, Linlu
Bhadauria, Vijai
Liu, Junfeng
Peng, You-Liang
author_facet Shi, Wei
Yang, Jun
Chen, Deng
Yin, Changfa
Zhang, Huixia
Xu, Xiaozhou
Pan, Xiao
Wang, Ruijin
Fei, Liwang
Li, Mengfei
Qi, Linlu
Bhadauria, Vijai
Liu, Junfeng
Peng, You-Liang
author_sort Shi, Wei
collection PubMed
description Serine/arginine-rich (SR) proteins are well known as splicing factors in humans, model animals and plants. However, they are largely unknown in regulating pre-mRNA splicing of filamentous fungi. Here we report that the SR protein MoSrp1 enhances and suppresses alternative splicing in a model fungal plant pathogen Magnaporthe oryzae. Deletion of MoSRP1 caused multiple defects, including reduced virulence and thousands of aberrant alternative splicing events in mycelia, most of which were suppressed or enhanced intron splicing. A GUAG consensus bound by MoSrp1 was identified in more than 94% of the intron or/and proximate exons having the aberrant splicing. The dual functions of regulating alternative splicing of MoSrp1 were exemplified in enhancing and suppressing the consensus-mediated efficient splicing of the introns in MoATF1 and MoMTP1, respectively, which both were important for mycelial growth, conidiation, and virulence. Interestingly, MoSrp1 had a conserved sumoylation site that was essential to nuclear localization and enhancing GUAG binding. Further, we showed that MoSrp1 interacted with a splicing factor and two components of the exon-joining complex via its N-terminal RNA recognition domain, which was required to regulate mycelial growth, development and virulence. In contrast, the C-terminus was important only for virulence and stress responses but not for mycelial growth and development. In addition, only orthologues from Pezizomycotina species could completely rescue defects of the deletion mutants. This study reveals that the fungal conserved SR protein Srp1 regulates alternative splicing in a unique manner.
format Online
Article
Text
id pubmed-9767378
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-97673782022-12-21 The rice blast fungus SR protein 1 regulates alternative splicing with unique mechanisms Shi, Wei Yang, Jun Chen, Deng Yin, Changfa Zhang, Huixia Xu, Xiaozhou Pan, Xiao Wang, Ruijin Fei, Liwang Li, Mengfei Qi, Linlu Bhadauria, Vijai Liu, Junfeng Peng, You-Liang PLoS Pathog Research Article Serine/arginine-rich (SR) proteins are well known as splicing factors in humans, model animals and plants. However, they are largely unknown in regulating pre-mRNA splicing of filamentous fungi. Here we report that the SR protein MoSrp1 enhances and suppresses alternative splicing in a model fungal plant pathogen Magnaporthe oryzae. Deletion of MoSRP1 caused multiple defects, including reduced virulence and thousands of aberrant alternative splicing events in mycelia, most of which were suppressed or enhanced intron splicing. A GUAG consensus bound by MoSrp1 was identified in more than 94% of the intron or/and proximate exons having the aberrant splicing. The dual functions of regulating alternative splicing of MoSrp1 were exemplified in enhancing and suppressing the consensus-mediated efficient splicing of the introns in MoATF1 and MoMTP1, respectively, which both were important for mycelial growth, conidiation, and virulence. Interestingly, MoSrp1 had a conserved sumoylation site that was essential to nuclear localization and enhancing GUAG binding. Further, we showed that MoSrp1 interacted with a splicing factor and two components of the exon-joining complex via its N-terminal RNA recognition domain, which was required to regulate mycelial growth, development and virulence. In contrast, the C-terminus was important only for virulence and stress responses but not for mycelial growth and development. In addition, only orthologues from Pezizomycotina species could completely rescue defects of the deletion mutants. This study reveals that the fungal conserved SR protein Srp1 regulates alternative splicing in a unique manner. Public Library of Science 2022-12-08 /pmc/articles/PMC9767378/ /pubmed/36480554 http://dx.doi.org/10.1371/journal.ppat.1011036 Text en © 2022 Shi et al 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 use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Shi, Wei
Yang, Jun
Chen, Deng
Yin, Changfa
Zhang, Huixia
Xu, Xiaozhou
Pan, Xiao
Wang, Ruijin
Fei, Liwang
Li, Mengfei
Qi, Linlu
Bhadauria, Vijai
Liu, Junfeng
Peng, You-Liang
The rice blast fungus SR protein 1 regulates alternative splicing with unique mechanisms
title The rice blast fungus SR protein 1 regulates alternative splicing with unique mechanisms
title_full The rice blast fungus SR protein 1 regulates alternative splicing with unique mechanisms
title_fullStr The rice blast fungus SR protein 1 regulates alternative splicing with unique mechanisms
title_full_unstemmed The rice blast fungus SR protein 1 regulates alternative splicing with unique mechanisms
title_short The rice blast fungus SR protein 1 regulates alternative splicing with unique mechanisms
title_sort rice blast fungus sr protein 1 regulates alternative splicing with unique mechanisms
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9767378/
https://www.ncbi.nlm.nih.gov/pubmed/36480554
http://dx.doi.org/10.1371/journal.ppat.1011036
work_keys_str_mv AT shiwei thericeblastfungussrprotein1regulatesalternativesplicingwithuniquemechanisms
AT yangjun thericeblastfungussrprotein1regulatesalternativesplicingwithuniquemechanisms
AT chendeng thericeblastfungussrprotein1regulatesalternativesplicingwithuniquemechanisms
AT yinchangfa thericeblastfungussrprotein1regulatesalternativesplicingwithuniquemechanisms
AT zhanghuixia thericeblastfungussrprotein1regulatesalternativesplicingwithuniquemechanisms
AT xuxiaozhou thericeblastfungussrprotein1regulatesalternativesplicingwithuniquemechanisms
AT panxiao thericeblastfungussrprotein1regulatesalternativesplicingwithuniquemechanisms
AT wangruijin thericeblastfungussrprotein1regulatesalternativesplicingwithuniquemechanisms
AT feiliwang thericeblastfungussrprotein1regulatesalternativesplicingwithuniquemechanisms
AT limengfei thericeblastfungussrprotein1regulatesalternativesplicingwithuniquemechanisms
AT qilinlu thericeblastfungussrprotein1regulatesalternativesplicingwithuniquemechanisms
AT bhadauriavijai thericeblastfungussrprotein1regulatesalternativesplicingwithuniquemechanisms
AT liujunfeng thericeblastfungussrprotein1regulatesalternativesplicingwithuniquemechanisms
AT pengyouliang thericeblastfungussrprotein1regulatesalternativesplicingwithuniquemechanisms
AT shiwei riceblastfungussrprotein1regulatesalternativesplicingwithuniquemechanisms
AT yangjun riceblastfungussrprotein1regulatesalternativesplicingwithuniquemechanisms
AT chendeng riceblastfungussrprotein1regulatesalternativesplicingwithuniquemechanisms
AT yinchangfa riceblastfungussrprotein1regulatesalternativesplicingwithuniquemechanisms
AT zhanghuixia riceblastfungussrprotein1regulatesalternativesplicingwithuniquemechanisms
AT xuxiaozhou riceblastfungussrprotein1regulatesalternativesplicingwithuniquemechanisms
AT panxiao riceblastfungussrprotein1regulatesalternativesplicingwithuniquemechanisms
AT wangruijin riceblastfungussrprotein1regulatesalternativesplicingwithuniquemechanisms
AT feiliwang riceblastfungussrprotein1regulatesalternativesplicingwithuniquemechanisms
AT limengfei riceblastfungussrprotein1regulatesalternativesplicingwithuniquemechanisms
AT qilinlu riceblastfungussrprotein1regulatesalternativesplicingwithuniquemechanisms
AT bhadauriavijai riceblastfungussrprotein1regulatesalternativesplicingwithuniquemechanisms
AT liujunfeng riceblastfungussrprotein1regulatesalternativesplicingwithuniquemechanisms
AT pengyouliang riceblastfungussrprotein1regulatesalternativesplicingwithuniquemechanisms